Image of detail
1.1.1
v1.7.3
Window-Wall Spandrel with no Interior Stud Cavity Insulation
Spandrel:
0.750 to 0.900W/m²·K/0.132 to 0.159Btu/ft²·°F·hr
3 detail scenarios
Window-Wall
Image of detail
1.1.2
v1.7.3
Window-Wall Spandrel with Interior Spray Foam Insulation
Spandrel:
0.550 to 0.630W/m²·K/0.097 to 0.111Btu/ft²·°F·hr
3 detail scenarios
Window-Wall
Image of detail
1.1.3
v1.7.3
Window Wall System – Full Height Spandrel with no Interior Stud Cavity Insulation
Spandrel:
0.690 to 0.840W/m²·K/0.122 to 0.148Btu/ft²·°F·hr
3 detail scenarios
Window-Wall
Image of detail
1.1.4
v1.7.3
Window Wall System – Full Height Spandrel with Interior Spray Foam Insulation
Spandrel:
0.280 to 0.310W/m²·K/0.049 to 0.055Btu/ft²·°F·hr
3 detail scenarios
Window-Wall
Image of detail
1.1.5
v1.8.0
Starline 9200 Series Window Wall System – Spandrel Clear Field with No Interior Insulation
Spandrel:
0.401 to 0.487W/m²·K/0.071 to 0.086Btu/ft²·°F·hr
2 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.1.6
v1.8.0
Starline 9200 Series Window Wall System – Spandrel Clear Field with Interior Mineral Wool Insulation
Spandrel:
0.334 to 0.420W/m²·K/0.059 to 0.074Btu/ft²·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.1.7
v1.8.0
Starline 9200 Series Window Wall System – Spandrel Clear Field with Interior Spray Foam Insulation
Spandrel:
0.329 to 0.412W/m²·K/0.058 to 0.073Btu/ft²·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.1.8
v1.8.0
Starline 9200 Series Window Wall System – Full Height Spandrel Clear Field with No Interior Insulation
Spandrel:
0.414 to 0.474W/m²·K/0.073 to 0.083Btu/ft²·°F·hr
2 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.1.9
v1.8.0
Starline 9200 Series Window Wall System – Full Height Spandrel Clear Field with Interior Mineral Wool Insulation
Spandrel:
0.253 to 0.347W/m²·K/0.045 to 0.061Btu/ft²·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.1.10
v1.8.0
Starline 9200 Series Window Wall System – Full Height Spandrel Clear Field with Interior Spray Foam Insulation
Spandrel:
0.225 to 0.320W/m²·K/0.040 to 0.056Btu/ft²·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.2.1
v1.7.3
Window-Wall Bypass at Spandrel Section without Interior Spray foam Insulation
Intermediate Floor:
0.606 to 0.628W/m·K/0.350 to 0.363Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Image of detail
1.2.2
v1.7.3
Window-Wall Bypass at Spandrel Section with Interior Spray foam Insulation
Intermediate Floor:
0.651 to 0.658W/m·K/0.376 to 0.380Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Image of detail
1.2.3
v1.7.3
Window Wall System with 3' x 3' Spandrel Section - AIM Applications at Intermediate Floor Intersection
Spandrel:
0.610W/m²·K/0.107Btu/ft²·°F·hr
1 detail scenario
Window-Wall
Dow Corning
VIP
Image of detail
1.2.4
v1.7.3
Improved Window-Wall Bypass at Spandrel Section with Thermally Broken Deflection Header without Interior Spray foam Insulation.
Intermediate Floor:
0.181 to 0.555W/m·K/0.105 to 0.321Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Image of detail
1.2.5
v1.7.3
Window-Wall Bypass at Full Height Spandrel Section without Interior Spray foam Insulation
Intermediate Floor:
0.634 to 0.675W/m·K/0.366 to 0.390Btu/ft·°F·hr
Spandrel:
0.970 to 1.100W/m²·K/0.171 to 0.194Btu/ft²·°F·hr
6 detail scenarios
Window-Wall
Image of detail
1.2.6
v1.7.3
Window-Wall Bypass at Full Height Spandrel Section with Interior Spray foam Insulation
Intermediate Floor:
0.774 to 0.789W/m·K/0.447 to 0.456Btu/ft·°F·hr
Spandrel:
0.600 to 0.630W/m²·K/0.106 to 0.111Btu/ft²·°F·hr
6 detail scenarios
Window-Wall
Image of detail
1.2.7
v1.7.3
Improved Window-Wall Bypass at Full Height Spandrel Section with Thermally Broken Deflection Header and without Interior Spray foam Insulation.
Intermediate Floor:
0.166 to 0.617W/m·K/0.096 to 0.357Btu/ft·°F·hr
Spandrel:
0.730 to 0.920W/m²·K/0.129 to 0.162Btu/ft²·°F·hr
4 detail scenarios
Window-Wall
Image of detail
1.2.8
v1.7.3
Window Wall System - Full Height Insulated Frame at Slab Intersection with Hybridized Clipped Spandrel and No Interior Stud Cavity Insulation
Intermediate Floor:
0.154W/m·K/0.089Btu/ft·°F·hr
Spandrel:
0.510W/m²·K/0.090Btu/ft²·°F·hr
2 detail scenarios
Window-Wall
Image of detail
1.2.9
v1.7.3
Window Wall System with Upstand Spandrel Section - Intermediate Floor Intersection with Spandrel Bypass and no Interior Stud Cavity Insulation
Intermediate Floor:
0.964W/m·K/0.557Btu/ft·°F·hr
1 detail scenario
Window-Wall
BV Glazing
Image of detail
1.2.10
v1.7.3
Window Wall System with Full Height Vision Section – Intermediate Floor Intersection with Spandrel Bypass and no Interior Stud Cavity Insulation
Intermediate Floor:
0.860W/m·K/0.497Btu/ft·°F·hr
1 detail scenario
Window-Wall
BV Glazing
Image of detail
1.2.11
v1.8.0
Starline 9200 Series Window Wall System – Intermediate Floor Intersection with Thermally Enhanced Bypass and No Interior Insulation
Intermediate Floor:
0.174 to 0.196W/m·K/0.101 to 0.113Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.2.12
v1.8.0
Starline 9200 Series Window Wall System – Intermediate Floor Intersection with Thermally Enhanced Bypass and Interior Mineral Wool Insulation
Intermediate Floor:
0.191 to 0.230W/m·K/0.110 to 0.133Btu/ft·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.2.13
v1.8.0
Starline 9200 Series Window Wall System – Intermediate Floor Intersection with Thermally Enhanced Bypass and Interior Spray Foam Insulation
Intermediate Floor:
0.196 to 0.235W/m·K/0.113 to 0.136Btu/ft·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.2.14
v1.8.0
Starline 9200 Series Window Wall System – Full Height Spandrel at Intermediate Floor Intersection with Thermally Enhanced Bypass and No Interior Insulation
Intermediate Floor:
0.138 to 0.171W/m·K/0.080 to 0.099Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.2.15
v1.8.0
Starline 9200 Series Window Wall System – Full Height Spandrel at Intermediate Floor Intersection with Thermally Enhanced Bypass and Interior Mineral Wool Insulation
Intermediate Floor:
0.210 to 0.263W/m·K/0.121 to 0.152Btu/ft·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.2.16
v1.8.0
Starline 9200 Series Window Wall System – Full Height Spandrel at Intermediate Floor Intersection with Thermally Enhanced Bypass and Interior Spray Foam Insulation
Intermediate Floor:
0.234 to 0.291W/m·K/0.135 to 0.168Btu/ft·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
Image of detail
1.3.1
v1.7.3
Exposed Concrete Parapet at Window-Wall with Concrete Roof Deck
Roof-to-Wall Transition:
0.981W/m·K/0.567Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry, Window-Wall
Image of detail
1.3.2
v1.7.3
Window Wall System - Partially Insulated Concrete Parapet & Roof Intersection
Roof-to-Wall Transition:
0.975 to 0.996W/m·K/0.563 to 0.575Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Window-Wall
Image of detail
1.4.1
v1.7.3
Window-Wall Full Height Spandrel with no Interior Study Cavity Insulation
Corner:
0.421 to 0.427W/m·K/0.243 to 0.247Btu/ft·°F·hr
Spandrel:
0.690 to 0.840W/m²·K/0.122 to 0.148Btu/ft²·°F·hr
6 detail scenarios
Window-Wall
Image of detail
1.4.2
v1.7.3
Window-Wall Full Height Spandrel with Interior Study Cavity Insulation
Corner:
0.197 to 0.206W/m·K/0.114 to 0.119Btu/ft·°F·hr
Spandrel:
0.280 to 0.310W/m²·K/0.049 to 0.055Btu/ft²·°F·hr
6 detail scenarios
Window-Wall
Image of detail
1.5.1
v1.7.3
Exposed Concrete Mass Wall Intersection with Window-Wall and Non-insulated Partition Wall
Interior to Exterior Wall:
0.670 to 0.820W/m·K/0.387 to 0.474Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Image of detail
1.5.2
v1.7.3
Exposed Concrete Mass Wall Intersection with Window-Wall and Insulated Partition Wall
Interior to Exterior Wall:
1.000 to 1.150W/m·K/0.578 to 0.664Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Image of detail
2.1.1
v1.7.3
Curtain-Wall Spandrel with no Interior Stud Cavity Insulation
Spandrel:
1.170 to 1.560W/m²·K/0.206 to 0.275Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.1.2
v1.7.3
Curtain-Wall Spandrel with Interior Spray Foam Insulation
Spandrel:
0.850 to 1.050W/m²·K/0.150 to 0.185Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.1.3
v1.7.3
Conventional Curtain Wall System with Vertical and Horizontal Pressure Plates and 5’ x 5’ Spandrel Section – Insulated Metal Backpan and Intermediate Floor Intersection
Spandrel:
1.160W/m²·K/0.204Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
Image of detail
2.1.4
v1.7.3
Conventional Curtain Wall System with Vertical and Horizontal Pressure Plates and 5’ x 5’ Spandrel Section –AIM Application and Intermediate Floor Intersection
Spandrel:
0.800 to 0.930W/m²·K/0.141 to 0.164Btu/ft²·°F·hr
4 detail scenarios
Curtain-Wall
Dow Corning
VIP
Image of detail
2.1.5
v1.7.3
Conventional Curtain Wall System with Vertical and Horizontal Pressure Plates and 5' x 5' Spandrel Section - Insulated Metal Backpan and Intermediate Floor Intersection
Spandrel:
1.160W/m²·K/0.204Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
Image of detail
2.1.6
v1.7.3
Conventional Curtain Wall System with 5' x 5' Spandrel Section - Alternative Glazing Methods and Intermediate Floor Intersection
Spandrel:
0.640 to 0.860W/m²·K/0.113 to 0.151Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Dow Corning
VIP
Image of detail
2.1.7
v1.7.3
Conventional Curtain Wall System with Vertical and Horizontal Pressure Plates and 5' x 5' Spandrel Section - Insulated Backpan and Improved Glazing at Intermediate Floor Intersection
Spandrel:
1.070W/m²·K/0.188Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
Image of detail
2.1.8
v1.7.3
Conventional Curtain Wall System with Vertical and Horizontal Pressure Plates and 5' x 5' Spandrel Section - AIM Applications and Improved Glazing at Intermediate Floor Intersection
Spandrel:
0.540W/m²·K/0.095Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
Dow Corning
VIP
Image of detail
2.1.9
v1.7.3
Conventional Curtain Wall System with Vertical and Horizontal Pressure Plates - Intermediate Mullion and 5' x 5' Spandrel Section - Insulated Backpan and Intermediate Floor Intersection
Spandrel:
1.420W/m²·K/0.250Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
Image of detail
2.1.10
v1.7.3
Curtain-Wall Spandrel with Vertical and Horizontal Pressure Plates
Spandrel:
0.920 to 1.230W/m²·K/0.162 to 0.217Btu/ft²·°F·hr
4 detail scenarios
Curtain-Wall
Dow Corning
VIP
Image of detail
2.1.11
v1.7.3
Curtain-Wall Spandrel with Interior Spray Foam Insulation and Thermally Broken Stud Cavity and Anchor. (2" Armatherm 500 beneath stud cavity)
Spandrel:
0.590 to 0.600W/m²·K/0.104 to 0.106Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Armatherm
Image of detail
2.1.12
v1.7.3
Curtain-Wall Spandrel with No Metal Back Pan and No Mullion Wrap
Spandrel:
1.180 to 1.370W/m²·K/0.208 to 0.241Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.1.13
v1.7.3
Curtain-Wall Spandrel with Back Pan Inset and Connected to Side of Frame
Spandrel:
0.910 to 1.310W/m²·K/0.160 to 0.231Btu/ft²·°F·hr
3 detail scenarios
Curtain-Wall
Image of detail
2.1.14
v1.7.3
Conventional Curtain Wall System with Vertical and Horizontal Pressure Plates and 5’ x 5’ Spandrel Section – Owens Corning Thermafiber Impasse System and Intermediate Floor Intersection
Spandrel:
0.730 to 1.070W/m²·K/0.129 to 0.188Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Owens Corning
Image of detail
2.2.1
v1.7.3
Exposed Concrete Parapet with Curtain-wall Outboard of Parapet and Concrete Roof Deck. Uninsulated Concrete with Spandrel and Roof intersection
Roof-to-Wall Transition:
0.838 to 0.853W/m·K/0.484 to 0.493Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Curtain-Wall
Image of detail
2.2.2
v1.7.3
Exposed Concrete Parapet with Curtain-wall Outboard of Parapet and Concrete Roof Deck, Insulated Spandrel & Roof Intersection
Roof-to-Wall Transition:
0.890 to 1.060W/m·K/0.514 to 0.612Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Curtain-Wall
AIM
Dow Corning
Image of detail
2.2.3
v1.7.3
Exterior Insulated Concrete Parapet with a Curtain-Wall System with Insulated Spandrel Panel and Interior Insulated (Spray Foam) Steel Stud Wall
Roof-to-Wall Transition:
0.657 to 0.738W/m·K/0.380 to 0.426Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
2.2.4
v1.7.3
Exterior Insulated Concrete Parapet with Curtain-wall Outboard of Parapet and Concrete Roof Deck
Roof-to-Wall Transition:
0.760 to 0.768W/m·K/0.439 to 0.444Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Curtain-Wall
Image of detail
2.3.1
v1.7.3
Conventional Curtain Wall System with Insulated Spandrel Panel - Uninsulated Jamb Intersection with Vision Section
Spandrel:
1.070 to 1.250W/m²·K/0.188 to 0.220Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.3.2
v1.7.3
Conventional Curtain Wall System with Insulated Spandrel Panel - Rigid Insulated Jamb Intersection with Vision Section
Spandrel:
0.920 to 1.190W/m²·K/0.162 to 0.210Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.3.3
v1.7.3
Conventional Curtain Wall System with Insulated Spandrel Panel - Aerogel Insulated Jamb Intersection with Vision Section
Spandrel:
0.880 to 1.070W/m²·K/0.155 to 0.188Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Aerogel
Dow Corning
Image of detail
2.4.1
v1.7.3
Steel-to-Concrete Through Beam Connection with Curtain-Wall Spandrel
Point Penetration:
0.100 to 0.116W/K/0.2 to 0.2Btu/°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.4.2
v1.7.3
Steel-to-Steel Through Beam Connection with Curtain-Wall Spandrel
Point Penetration:
0.140 to 0.156W/K/0.3 to 0.3Btu/°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.4.3
v1.7.3
Structural Beam and Canopy Gutter Intersection with Curtain-Wall
Point Penetration:
1.017 to 1.204W/K/1.9 to 2.3Btu/°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.4.4
v1.7.3
Steel-to-Steel Through Beam Connection with Curtain-Wall Spandrel and Boxed Mullions
Point Penetration:
0.080 to 0.110W/K/0.2 to 0.2Btu/°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
2.5.1
v1.7.3
Exterior Insulated Foundation Wall Transition with Curtain-Wall and aerogel insulation
Foundation/Grade:
0.640 to 0.857W/m·K/0.370 to 0.495Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall
Aerogel
Dow Corning
Image of detail
3.1.1
v1.7.3
Unitized Curtain-Wall Spandrel with no Interior Stud Cavity Insulation
Spandrel:
0.740 to 0.890W/m²·K/0.130 to 0.157Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
3.1.2
v1.7.3
Unitized Curtain-Wall Spandrel with Interior Spray Foam Insulation
Spandrel:
0.640 to 0.750W/m²·K/0.113 to 0.132Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
3.1.3
v1.7.3
Exterior Insulated Unitized Curtain-Wall System with Brackets (24” x 36”) and Rails Supporting Cladding – Clear Wall
Spandrel:
0.170 to 0.299W/m²·K/0.030 to 0.053Btu/ft²·°F·hr
4 detail scenarios
Curtain-Wall
Image of detail
3.1.4
v1.7.3
Unitized Curtain Wall System with Exterior Insulation, Brackets (36” x 24”) and Rails Supporting Cladding – Clear Wall
Spandrel:
0.164 to 0.280W/m²·K/0.029 to 0.049Btu/ft²·°F·hr
4 detail scenarios
Curtain-Wall
Image of detail
3.1.5
v1.7.3
Exterior Insulated Unitized Curtain Wall System with Exterior Insulation, Brackets (36” x 36”) and Rails Supporting Cladding – Clear Wall
Spandrel:
0.143 to 0.249W/m²·K/0.025 to 0.044Btu/ft²·°F·hr
4 detail scenarios
Curtain-Wall
Image of detail
3.2.1
v1.7.3
Spandrel Section at Intermediate Concrete Floor with Unitized-Curtain-Wall System without Interior Spray foam Insulation, with Mineral wool insulation
Intermediate Floor:
0.004 to 0.007W/m·K/0.002 to 0.004Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
3.2.2
v1.7.3
Spandrel Section at Intermediate Concrete Floor with Unitized-Curtain-Wall System with Interior Spray foam Insulation and Mineral wool insulation
Intermediate Floor:
0.038 to 0.053W/m·K/0.022 to 0.031Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
3.2.3
v1.7.3
Unitized Curtain Wall System with 4-Sided Structural Silicone Joints and 5' x 5' Spandrel Section - Insulated Backpan and Intermediate Floor Intersection
Spandrel:
1.320W/m²·K/0.232Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
3.2.4
v1.7.3
Unitized Curtain-Wall Spandrel with AIM Application
Spandrel:
0.340 to 0.590W/m²·K/0.060 to 0.104Btu/ft²·°F·hr
3 detail scenarios
Curtain-Wall
Dow Corning
VIP
Image of detail
3.2.5
v1.7.3
Unitized Curtain Wall System with 4-Sided Structural Silicone Joints and 5' x 5' Spandrel Section - Insulated Backpan and Improved Glazing at Intermediate Floor Intersection
Spandrel:
1.210W/m²·K/0.213Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
Image of detail
3.2.6
v1.7.3
Unitized Curtain-Wall Spandrel with AIM Application and improved glazing
Spandrel:
0.390 to 0.530W/m²·K/0.069 to 0.093Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Dow Corning
VIP
Image of detail
3.3.1
v1.7.3
Unitized Curtain-Wall Transition to Window-Wall with no Interior Insulation, and continous spray form Insulation R-9.
Assembly Joint:
0.207 to 0.217W/m·K/0.120 to 0.125Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall, Window-Wall
Image of detail
3.3.2
v1.7.3
Unitized Curtain-Wall Transition to Window-Wall with Interior Spray Foam Insulation
Assembly Joint:
0.509 to 0.578W/m·K/0.294 to 0.334Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall, Window-Wall
Image of detail
3.3.3
v1.7.3
Exterior Insulated Unitized Curtain-Wall System with Brackets (36” x 24”) and Rails Supporting Cladding – Stack Joint Intersection
Assembly Joint:
0.019 to 0.039W/m·K/0.011 to 0.023Btu/ft·°F·hr
4 detail scenarios
Curtain-Wall
Image of detail
3.3.4
v1.7.3
Exterior Insulated Unitized Curtain-Wall System with Brackets (36” x 36”) and Rails Supporting Cladding – Stack Joint Intersection
Assembly Joint:
0.029 to 0.050W/m·K/0.017 to 0.029Btu/ft·°F·hr
4 detail scenarios
Curtain-Wall
Image of detail
4.1.1
v1.7.3
High Performance Curtain-Wall Spandrel with no Interior Stud Cavity Insulation
Spandrel:
0.950 to 1.350W/m²·K/0.167 to 0.238Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
4.1.2
v1.7.3
High Performance Curtain-Wall Spandrel with Interior Spray Foam Insulation
Spandrel:
0.640 to 0.950W/m²·K/0.113 to 0.167Btu/ft²·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
4.1.3
v1.8.0
Flynn / Northern Facades 6450 HP Unitized Curtain Wall System with Triple Glazed IGU Spandrel - Clear Field
Spandrel:
0.537 to 0.820W/m²·K/0.095 to 0.144Btu/ft²·°F·hr
4 detail scenarios
Curtain-Wall
Flynn / Northern Facades
Image of detail
4.1.4
v1.8.0
Flynn/Northern Facades 6450 HP Unitized Curtain Wall System with Full Height Triple Glazed IGU Spandrel – Clear Field
Spandrel:
0.532 to 0.582W/m²·K/0.094 to 0.103Btu/ft²·°F·hr
3 detail scenarios
Curtain-Wall
Flynn / Northern Facades
Image of detail
4.2.1
v1.7.3
Spandrel Section at Intermediate Concrete Floor with High Performance Curtain-wall System without Interior Spray foam Insulation
Intermediate Floor:
0.028 to 0.064W/m·K/0.016 to 0.037Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
4.2.2
v1.7.3
Spandrel Section at Intermediate Concrete Floor with High Performance Curtain-wall System with Interior Spray foam Insulation
Intermediate Floor:
0.087 to 0.161W/m·K/0.050 to 0.093Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall
Image of detail
4.2.3
v1.7.3
High Performance Curtain Wall System with Vertical and Horizontal Pressure Plates and 5' x 5' Spandrel Section - Insulated Backpan and Intermediate Floor Intersection
Spandrel:
0.890W/m²·K/0.157Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
Image of detail
4.2.4
v1.7.3
High Performance Curtain-Wall Spandrel with AIM Application
Spandrel:
0.410 to 0.510W/m²·K/0.072 to 0.090Btu/ft²·°F·hr
4 detail scenarios
Curtain-Wall
Dow Corning
VIP
Image of detail
4.2.5
v1.7.3
High Performance Curtain Wall System with Vertical and Horizontal Pressure Plates, Intermediate Mullion and 5' x 5' Spandrel Section - Insulated Backpan and Intermediate Floor Intersection
Spandrel:
1.160W/m²·K/0.204Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
Image of detail
4.2.6
v1.7.3
High Performance Curtain-Wall Spandrel with AIM Application and Intermediate Mullion
Spandrel:
0.550 to 0.800W/m²·K/0.097 to 0.141Btu/ft²·°F·hr
3 detail scenarios
Curtain-Wall
Dow Corning
VIP
Image of detail
4.3.1
v1.8.0
Flynn/Northern Facades 6450 HP Unitized Curtain Wall System with Triple Glazed IGU Spandrel - Horizontal Expansion Joint Intersection
Assembly Joint:
0.191 to 0.196W/m·K/0.110 to 0.113Btu/ft·°F·hr
4 detail scenarios
Curtain-Wall, N/A
Flynn / Northern Facades
Image of detail
4.3.2
v1.8.0
Flynn/ Northern Facade 6450 HP Unitized Curtain Wall System with Triple Glazed IGU Spandrel - Horizontal Transom Intersection
Assembly Joint:
0.186 to 0.200W/m·K/0.107 to 0.116Btu/ft·°F·hr
4 detail scenarios
Curtain-Wall, N/A
Flynn / Northern Facades
Image of detail
4.3.3
v1.8.0
Flynn/ Northern Facade 6450 HP Unitized Curtain Wall System with Triple Glazed IGU Spandrel - Horizontal Expansion Joint Intersection
Assembly Joint:
0.462 to 0.474W/m·K/0.267 to 0.274Btu/ft·°F·hr
3 detail scenarios
Curtain-Wall, N/A
Flynn / Northern Facades
Image of detail
4.3.4
v1.8.0
Flynn/ Northern Facade 6450 HP Unitized Curtain Wall System with Triple Glazed IGU Spandrel - Horizontal Transom Intersection
Assembly Joint:
0.270 to 0.277W/m·K/0.156 to 0.160Btu/ft·°F·hr
3 detail scenarios
Curtain-Wall, N/A
Flynn / Northern Facades
Image of detail
4.3.5
v2.0.0
Unitized Curtain Wall System with Triple Glazed IGU Spandrel - Glazing Jamb Interface
Assembly Joint:
0.006W/m·K/0.003Btu/ft·°F·hr
1 detail scenario
Curtain-Wall
Image of detail
5.1.1
v1.7.3
Interior Insulated 3 5/8” x 1 5/8” Steel Stud Wall Assembly – Clear Wall
Clear Wall:
0.522 to 1.821W/m²·K/0.092 to 0.321Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.2
v1.7.3
Interior Insulated 6” x 1 5/8” Steel Stud Wall Assembly – Clear Wall
Clear Wall:
0.373 to 1.815W/m²·K/0.066 to 0.320Btu/ft²·°F·hr
10 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.3
v1.7.3
Exterior Insulated Steel-Framed Wall with Drained EIFS
Clear Wall:
0.330 to 0.570W/m²·K/0.058 to 0.100Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
EIFS
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
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5.1.4
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.180 to 0.340W/m²·K/0.032 to 0.060Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
EIFS
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-12
Image of detail
5.1.5
v1.7.3
Exterior Insulated Steel-Framed Wall with Vertical Z-Girts Supporting Metal Cladding
Clear Wall:
0.396 to 0.893W/m²·K/0.070 to 0.157Btu/ft²·°F·hr
8 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.6
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8″ Steel Stud (16″ o.c.) Wall Assembly with Vertical Z-Girts (16″ o.c.) Supporting Metal Cladding and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.293 to 0.322W/m²·K/0.052 to 0.057Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-20
Image of detail
5.1.7
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Vertical Z-Girts (16” o.c.) and 1 1/2" Spray Foam (R-9.8) in Stud Cavity – Clear Wall
Clear Wall:
0.420W/m²·K/0.074Btu/ft²·°F·hr
1 detail scenario
Steel-Framed
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-9.8
Image of detail
5.1.8
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Vertical Z-Girts (16” o.c.) and 2" Spray Foam (R-11.4) in Stud Cavity – Clear Wall
Clear Wall:
0.360 to 0.470W/m²·K/0.063 to 0.083Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-11
Image of detail
5.1.9
v1.7.3
Exterior Insulated Steel-Framed Wall with Horizontal Z-Girts Supporting Metal Cladding
Clear Wall:
0.390 to 0.830W/m²·K/0.069 to 0.146Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.10
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-Girts (24” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Max Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.218 to 0.357W/m²·K/0.038 to 0.063Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.11
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-Girts (24” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Plus 110 Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.217 to 0.355W/m²·K/0.038 to 0.063Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.12
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-Girts (24” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.215 to 0.353W/m²·K/0.038 to 0.062Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.13
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Vertical Z-girts (16” o.c.) Supporting Stucco Cladding and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.380 to 0.440W/m²·K/0.067 to 0.077Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-12
Image of detail
5.1.14
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ o.c) Wall Assembly with Horizontal Z-Girts (24″ o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.260 to 0.620W/m²·K/0.046 to 0.109Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-12
Image of detail
5.1.15
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-Girts (24” o.c.) and 1 1/2" Spray Foam (R-9.8) in Stud Cavity – Clear Wall
Clear Wall:
0.370W/m²·K/0.065Btu/ft²·°F·hr
1 detail scenario
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-9.8
Image of detail
5.1.16
v1.7.3
Exterior Insulated Steel-Framed Wall with Vertical and Horizontal Z-Girts Supporting Metal Cladding
Clear Wall:
0.300 to 0.550W/m²·K/0.053 to 0.097Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.17
v1.7.3
Exterior Insulated Steel-Framed Wall with Intermittent Vertical Z-Girts vertically Supporting Metal Cladding
Clear Wall:
0.280 to 0.810W/m²·K/0.049 to 0.143Btu/ft²·°F·hr
15 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.18
v1.7.3
Exterior Insulated Steel-Framed Wall with Horizontal Clips Supporting Metal Cladding
Clear Wall:
0.280 to 0.390W/m²·K/0.049 to 0.069Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.19
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Clips (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.240 to 0.330W/m²·K/0.042 to 0.058Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.20
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Vertical Z Clips (16” o.c.) Supporting Stucco Cladding and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.270 to 0.350W/m²·K/0.048 to 0.062Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-12
Image of detail
5.1.21
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Knight MFI-System (24” o.c.) Supporting Cladding – Clear Wall
Clear Wall:
0.250 to 0.530W/m²·K/0.044 to 0.093Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
Knight Wall
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.22
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Knight MFI-System (24” o.c.) Supporting Cladding and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.180 to 0.300W/m²·K/0.032 to 0.053Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
Knight Wall
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-19
Image of detail
5.1.23
v1.7.3
Exterior Insulated Steel-Framed Wall with CL-Talon 300 Clip System Supporting Cladding
Clear Wall:
0.307 to 0.622W/m²·K/0.054 to 0.110Btu/ft²·°F·hr
9 detail scenarios
Steel-Framed
CL-Talon
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.24
v1.7.3
Exterior Insulated Steel-Framed Wall with Thermally Isolated Aluminum Clip Horizontal Sub-girt System supporting Cladding
Clear Wall:
0.190 to 0.350W/m²·K/0.033 to 0.062Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
Engineered Assemblies
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.25
v1.7.3
Exterior and Interior Insulated Steel-Framed Wall with Fiber Reinforced Clips and Steel Rail supporting Cladding
Clear Wall:
0.170 to 0.370W/m²·K/0.030 to 0.065Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
TAC
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.26
v1.7.3
Exterior and Interior Insulated Steel-Framed Wall with Thermally Isolated Aluminum Clip and Rail System supporting Cladding
Clear Wall:
0.190 to 0.410W/m²·K/0.033 to 0.072Btu/ft²·°F·hr
32 detail scenarios
Steel-Framed
Longboard
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.27
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Max Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.233 to 0.367W/m²·K/0.041 to 0.065Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.28
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Plus 110 Exterior Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.230 to 0.366W/m²·K/0.041 to 0.064Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.29
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier Ci HC 80 Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.228 to 0.363W/m²·K/0.040 to 0.064Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.30
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Max Insulation and R-22 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.228 to 0.355W/m²·K/0.040 to 0.063Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-22
Image of detail
5.1.31
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Plus 110 Exterior Insulation and R-22 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.226 to 0.354W/m²·K/0.040 to 0.062Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-22
Image of detail
5.1.32
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier Ci HC 80 Insulation and R-22 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.223 to 0.352W/m²·K/0.039 to 0.062Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-22
Image of detail
5.1.33
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Max Insulation and R-24 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.224 to 0.345W/m²·K/0.039 to 0.061Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-24
Image of detail
5.1.34
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Plus 110 Exterior Insulation and R-24 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.222 to 0.344W/m²·K/0.039 to 0.060Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-24
Image of detail
5.1.35
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier Ci HC 80 Insulation and R-24 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.219 to 0.342W/m²·K/0.039 to 0.060Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-24
Image of detail
5.1.36
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Knight CI-System (8” o.c.) and 1 1/2” Spray Foam (R-9.8) in Stud Cavity – Clear Wall
Clear Wall:
0.220 to 0.320W/m²·K/0.039 to 0.056Btu/ft²·°F·hr
2 detail scenarios
Steel-Framed
Knight Wall
Image of detail
5.1.37
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Knight CI-System (16” o.c.) and 1 1/2” Spray Foam (R-9.8) in Stud Cavity – Clear Wall
Clear Wall:
0.210 to 0.300W/m²·K/0.037 to 0.053Btu/ft²·°F·hr
2 detail scenarios
Steel-Framed
Knight Wall
Image of detail
5.1.38
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Knight CI-System (8” o.c.) – Clear Wall
Clear Wall:
0.270 to 0.450W/m²·K/0.048 to 0.079Btu/ft²·°F·hr
2 detail scenarios
Steel-Framed
Knight Wall
Image of detail
5.1.39
v1.7.3
Exterior Insulated Steel-Framed Wall with R-TEC CI Bracket System supporting Vertical Sub-girts
Clear Wall:
0.206 to 0.387W/m²·K/0.036 to 0.068Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
AFCC
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.40
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with R-TEC CI Bracket System Supporting Vertical Sub-girts and R-13 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.166 to 0.267W/m²·K/0.029 to 0.047Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
AFCC
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-13
Image of detail
5.1.41
v1.7.3
Exterior Insulated Steel-Framed Wall with Thermally Broken ISO Clip System supporting Vertical Sub-girts
Clear Wall:
0.302 to 0.398W/m²·K/0.053 to 0.070Btu/ft²·°F·hr
9 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.42
v1.7.3
Exterior Insulated Steel-Framed Wall with Thermally Broken ISO Clip System supporting Horizontal Sub-girts
Clear Wall:
0.235 to 0.377W/m²·K/0.041 to 0.066Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.43
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Broken ISO Clip System Supporting Vertical Sub-girts and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.230 to 0.289W/m²·K/0.041 to 0.051Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-12
Image of detail
5.1.44
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Broken ISO Clip System Supporting Horizontal Sub-girts and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.179 to 0.273W/m²·K/0.032 to 0.048Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
3-5/8" Steel-framed
R-12
Image of detail
5.1.45
v1.7.3
Exterior Insulated Steel-Framed Wall with Thermaly Broken ISO Clip System Supporting Horizontal and Vertical Sub-girts
Clear Wall:
0.180 to 0.260W/m²·K/0.032 to 0.046Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.46
v1.7.3
Exterior Insulated Steel-Framed Wall with Thermaly Broken ISO Clip System Supporting Horizontal and Vertical Sub-girts
Clear Wall:
0.180 to 0.240W/m²·K/0.032 to 0.042Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.47
v1.7.3
Exterior Insulated Steel-Framed Wall with Nvelope NV1 Clip System supporting Cladding
Clear Wall:
0.260 to 0.450W/m²·K/0.046 to 0.079Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Nvelope
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.48
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Nvelope – NV1 Clip System Supporting Cladding and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.200 to 0.360W/m²·K/0.035 to 0.063Btu/ft²·°F·hr
15 detail scenarios
Steel-Framed
Nvelope
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-12
Image of detail
5.1.49
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Nvelope – NV1 Clip System Supporting Cladding and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.227 to 0.339W/m²·K/0.040 to 0.060Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Nvelope
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-19
Image of detail
5.1.50
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Slotted Steel R-Stud (16” o.c.) Wall Assembly with Nvelope – NV1 Clip System Supporting Cladding and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.200 to 0.290W/m²·K/0.035 to 0.051Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Nvelope
R-Stud
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-19
Image of detail
5.1.51
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Nvelope – Eko Thermobracket Clip System Supporting Cladding and R-13 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.119W/m²·K/0.021Btu/ft²·°F·hr
1 detail scenario
Steel-Framed
Nvelope
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-13
Image of detail
5.1.52
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Nvelope – Eko Thermobracket and NV1 Clip System Supporting Cladding and R-13 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.150 to 0.160W/m²·K/0.026 to 0.028Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
Nvelope
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-13
Image of detail
5.1.53
v1.7.3
Exterior Insulated Steel-Framed Wall with Cascadia Clip Fiberglass Spacer and Through Insulation Fasteners Supporting Cladding
Clear Wall:
0.170 to 0.510W/m²·K/0.030 to 0.090Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
Cascadia
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.54
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8″ Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Vertical Clips (24″ o.c. and 36” o.c.) Supporting Cladding and Owens Corning R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.206 to 0.361W/m²·K/0.036 to 0.064Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.55
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8” Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Vertical Clips (24″ o.c. and 36” o.c.) Supporting Cladding and Owens Corning R-22.5 Batt Insulation in Stud Cavity– Clear Wall
Clear Wall:
0.200 to 0.350W/m²·K/0.035 to 0.062Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
24" o.c.
5/8" Sheathing
6" Steel-framed
R-22.5
Image of detail
5.1.56
v1.7.3
Exterior and Interior Insulated 6″ x 1/58” Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Vertical Clips (24″ o.c. and 36” o.c.) Supporting Cladding and Owens Corning R-24 Batt Insulation in Stud Cavity– Clear Wall
Clear Wall:
0.200 to 0.340W/m²·K/0.035 to 0.060Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
24" o.c.
5/8" Sheathing
6" Steel-framed
R-24
Image of detail
5.1.57
v1.7.3
Exterior Insulated 6″ x 1 5/8″ Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Vertical Clips (24″ o.c. and 36” o.c.) Supporting Cladding – Clear Wall
Clear Wall:
0.216 to 0.805W/m²·K/0.038 to 0.142Btu/ft²·°F·hr
28 detail scenarios
Steel-Framed
1/2" Drywall
16" o.c.
24" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.58
v1.7.3
Owens Corning Exterior Insulated 6″ x 1 5/8” Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding – Clear Wall
Clear Wall:
0.320 to 0.570W/m²·K/0.056 to 0.100Btu/ft²·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.59
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8″ Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Vertical Clips (24″ o.c. and 36” o.c.) Supporting Cladding and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.153 to 0.248W/m²·K/0.027 to 0.044Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
1/2" Drywall
16" o.c.
24" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.60
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8″ Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Steel Brick Anchors Supporting Brick Veneer and Owens Corning R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.210 to 0.340W/m²·K/0.037 to 0.060Btu/ft²·°F·hr
8 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.61
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Steel Brick Anchors Supporting Brick Veneer and Owens Corning R-22.5 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.190 to 0.320W/m²·K/0.033 to 0.056Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-22.5
Image of detail
5.1.62
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Steel Brick Anchors Supporting Brick Veneer and Owens Corning R-24 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.180 to 0.320W/m²·K/0.032 to 0.056Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-24
Image of detail
5.1.63
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer and Owens Corning R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.220 to 0.330W/m²·K/0.039 to 0.058Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
Heckmann
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.64
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer and Owens Corning R-22.5 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.210 to 0.320W/m²·K/0.037 to 0.056Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
Heckmann
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-22.5
Image of detail
5.1.65
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer and Owens Corning R-24 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.210 to 0.320W/m²·K/0.037 to 0.056Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
Heckmann
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-24
Image of detail
5.1.66
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Steel Anchor Supporting Brick Veneer, Owens Corning XPS Exterior Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.228 to 0.361W/m²·K/0.040 to 0.064Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
Hohmann & Barnard
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.67
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Zinc 2-Seal Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.313 to 0.777W/m²·K/0.055 to 0.137Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.68
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Stainless Steel 2-Seal Thermal Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.283 to 0.731W/m²·K/0.050 to 0.129Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.69
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Stainless Steel 2-Seal Thermal Wing Nut Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.285 to 0.737W/m²·K/0.050 to 0.130Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.70
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Carbon Steel X-Seal Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.351 to 0.844W/m²·K/0.062 to 0.149Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.71
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Stainless Steel X-Seal Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.324 to 0.804W/m²·K/0.057 to 0.142Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.72
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Carbon Steel HB-213 2X Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.315 to 0.770W/m²·K/0.055 to 0.136Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.73
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Stainless Steel HB-213 2X Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.298 to 0.740W/m²·K/0.052 to 0.130Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.74
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Carbon Steel HB-200-X Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.323 to 0.762W/m²·K/0.057 to 0.134Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.75
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Stainless Steel HB-200-X Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.300 to 0.738W/m²·K/0.053 to 0.130Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.76
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Carbon Steel BL-407 Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.205 to 0.773W/m²·K/0.036 to 0.136Btu/ft²·°F·hr
21 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.77
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Hohmann & Barnard Masonry Stainless Steel BL-407 Anchor Supporting Brick Veneer – Clear Wall
Clear Wall:
0.295 to 0.751W/m²·K/0.052 to 0.132Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
Hohmann & Barnard
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.78
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8″ Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Stainless Steel Brick Anchors Supporting Brick Veneer and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.126 to 0.336W/m²·K/0.022 to 0.059Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.79
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8″ Steel Stud (16″ o.c. and 24” o.c.) Wall Assembly with Steel Brick Anchors Supporting Brick Veneer and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.139 to 0.216W/m²·K/0.025 to 0.038Btu/ft²·°F·hr
8 detail scenarios
Steel-Framed
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.80
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with ECO Cladding Alpha Vci Vertical System – Clear Wall
Clear Wall:
0.270 to 0.609W/m²·K/0.048 to 0.107Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ECO Cladding
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.81
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with ECO Cladding Alpha Vci Vertical System and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.196 to 0.340W/m²·K/0.035 to 0.060Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ECO Cladding
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-19
Image of detail
5.1.82
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with ECO Cladding Alpha Hci Horizontal System – Clear Wall
Clear Wall:
0.302 to 0.633W/m²·K/0.053 to 0.111Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ECO Cladding
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.83
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with ECO Cladding Alpha Hci Horizontal System and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.209 to 0.345W/m²·K/0.037 to 0.061Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ECO Cladding
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-19
Image of detail
5.1.84
v1.7.3
Exterior Insulated Steel-Framed Wall with Armadillo FRR Horizontal Z-Girts Supporting Cladding
Clear Wall:
0.150 to 0.690W/m²·K/0.026 to 0.122Btu/ft²·°F·hr
21 detail scenarios
Steel-Framed
Armatherm
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
Uninsulated
Image of detail
5.1.85
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ O.C.) Wall Assembly with Armadillo FRR Horizontal Z-Girts Supporting Cladding and R-13 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.130 to 0.380W/m²·K/0.023 to 0.067Btu/ft²·°F·hr
21 detail scenarios
Steel-Framed
Armatherm
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
R-13
Image of detail
5.1.86
v1.7.3
Exterior Insulated Steel-Framed Wall with Armadillo FRR Vertical Z-Girts Supporting Cladding
Clear Wall:
0.160 to 0.710W/m²·K/0.028 to 0.125Btu/ft²·°F·hr
7 detail scenarios
Steel-Framed
Armatherm
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
R-13
Image of detail
5.1.87
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ O.C.) Wall Assembly with Armadillo FRR Vertical Z-Girts Supporting Cladding and R-13 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.130 to 0.390W/m²·K/0.023 to 0.069Btu/ft²·°F·hr
7 detail scenarios
Steel-Framed
Armatherm
1/2" Drywall
16" o.c.
3-5/8" Steel-framed
5/8" Sheathing
R-13
Image of detail
5.1.88
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Brick Ties (24” o.c.) Supporting Brick Veneer – Clear Wall
Clear Wall:
0.287 to 0.353W/m²·K/0.051 to 0.062Btu/ft²·°F·hr
2 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.89
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with FERO Slotted Rap Ties (24” o.c.) Supporting Brick Veneer – Clear Wall
Clear Wall:
0.232 to 0.305W/m²·K/0.041 to 0.054Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Aerogel
FERO
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
Uninsulated
Image of detail
5.1.90
v1.7.3
Exterior Insulated 6″ x 1 5/8″ Steel Stud (16″ O.C.) Wall Assembly with Fiber Reinforced Plastic Clip Supporting Cladding – Clear Wall
Clear Wall:
0.142 to 0.237W/m²·K/0.025 to 0.042Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.91
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8″ Steel Stud (16″ O.C.) Wall Assembly with Fiber Reinforced Plastic Clip Supporting Metal Cladding and R-19 Batt in Stud Cavity – Clear Wall
Clear Wall:
0.120 to 0.180W/m²·K/0.021 to 0.032Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.92
v1.7.3
Exterior Insulated 6″ x 1 5/8″ Steel Stud (16″ O.C.) Wall Assembly with Aluminum Bracket
Point Penetration:
0.038 to 0.045W/K/0.1 to 0.1Btu/°F·hr
3 detail scenarios
Steel-Framed
Image of detail
5.1.93
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8″ Steel Stud (16″ O.C.) Wall Assembly with Double Aluminum Bracket Supporting Metal Cladding and R-19 Batt Insulation in Stud Cavity
Point Penetration:
0.020 to 0.026W/K/0.0 to 0.0Btu/°F·hr
3 detail scenarios
Steel-Framed
Image of detail
5.1.94
v1.7.3
Exterior Insulated 6″ x 1 5/8″ Steel Stud (16″ O.C.) Wall Assembly with Technoform Clip and Steel Fasteners - Clear Wall
Clear Wall:
0.190 to 0.590W/m²·K/0.033 to 0.104Btu/ft²·°F·hr
20 detail scenarios
Steel-Framed
Technoform
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.95
v1.7.3
Exterior Insulated 6″ x 1 5/8″ Steel Stud (16″ O.C.) Wall Assembly with Technoform Clip and Stainless Steel Fasteners - Clear Wall
Clear Wall:
0.180 to 0.570W/m²·K/0.032 to 0.100Btu/ft²·°F·hr
20 detail scenarios
Steel-Framed
Technoform
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.96
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Galvanized Horizontal Intermittent Clips (24” o.c.) Supporting Metal Cladding and Owens Corning R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.210 to 0.330W/m²·K/0.037 to 0.058Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.97
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Galvanized Horizontal Intermittent Clips (24” o.c.) Supporting Metal Cladding and Owens Corning R-22.5 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.210 to 0.320W/m²·K/0.037 to 0.056Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-22.5
Image of detail
5.1.98
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Galvanized Horizontal Intermittent Clips (24” o.c.) Supporting Metal Cladding and Owens Corning R-24 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.200 to 0.310W/m²·K/0.035 to 0.055Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
Owens Corning
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-24
Image of detail
5.1.99
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with EJOT Crossfix Console and Horizontal Rail System Supporting Metal Cladding - Clear Wall
Clear Wall:
0.087 to 0.554W/m²·K/0.015 to 0.098Btu/ft²·°F·hr
66 detail scenarios
Steel-Framed
EJOT
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.100
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with EJOT Crossfix Console and Horizontal Rail System Supporting Metal Cladding and R-20 Batt Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.076 to 0.306W/m²·K/0.013 to 0.054Btu/ft²·°F·hr
66 detail scenarios
Steel-Framed
EJOT
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.101
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with EJOT Crossfix Console and Horizontal Rail System Supporting Metal Cladding - Clear Wall
Clear Wall:
0.089 to 0.539W/m²·K/0.016 to 0.095Btu/ft²·°F·hr
33 detail scenarios
Steel-Framed
EJOT
1/2" Drywall
24" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.102
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with EJOT Crossfix Console and Horizontal Rail System Supporting Metal Cladding and R-20 Batt Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.076 to 0.267W/m²·K/0.013 to 0.047Btu/ft²·°F·hr
33 detail scenarios
Steel-Framed
EJOT
1/2" Drywall
24" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.103
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with EJOT Crossfix Console and Vertical Rail System Supporting Metal Cladding - Clear Wall
Clear Wall:
0.088 to 0.566W/m²·K/0.015 to 0.100Btu/ft²·°F·hr
66 detail scenarios
Steel-Framed
EJOT
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.104
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with EJOT Crossfix Console and Vertical Rail System Supporting Metal Cladding and R-20 Batt Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.077 to 0.316W/m²·K/0.014 to 0.056Btu/ft²·°F·hr
66 detail scenarios
Steel-Framed
EJOT
1/2" Drywall
16" o.c.
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.105
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with EJOT Crossfix Console and Vertical Rail System Supporting Metal Cladding - Clear Wall
Clear Wall:
0.090 to 0.538W/m²·K/0.016 to 0.095Btu/ft²·°F·hr
33 detail scenarios
Steel-Framed
EJOT
1/2" Drywall
24" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.106
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with EJOT Crossfix Console and Vertical Rail System Supporting Metal Cladding and R-20 Batt Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.077 to 0.272W/m²·K/0.013 to 0.048Btu/ft²·°F·hr
33 detail scenarios
Steel-Framed
EJOT
1/2" Drywall
24" o.c.
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.107
v1.7.3
Exterior Insulated 6” x 1 /58” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-Girts (24” o.c.) Supporting Cladding and Owens Corning ThermaFiber RainBarrier HC Max Insulation – Clear Wall
Clear Wall:
0.379 to 0.870W/m²·K/0.067 to 0.153Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.108
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Max Insulation – Clear Wall
Clear Wall:
0.349 to 0.806W/m²·K/0.061 to 0.142Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.109
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier Ci HC 80 Insulation – Clear Wall
Clear Wall:
0.337 to 0.787W/m²·K/0.059 to 0.139Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.110
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Stainless Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Max Insulation – Clear Wall
Clear Wall:
0.318 to 0.790W/m²·K/0.056 to 0.139Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.111
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Stainless Steel Fasteners (12” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier Ci HC 80 Insulation – Clear Wall
Clear Wall:
0.307 to 0.770W/m²·K/0.054 to 0.136Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.112
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Stainless Steel Fasteners (16” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier HC Max Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.210 to 0.354W/m²·K/0.037 to 0.062Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.113
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Stainless Steel Fasteners (16” o.c.) Supporting Cladding, Owens Corning ThermaFiber RainBarrier Ci HC 80/45 Insulation and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.204 to 0.350W/m²·K/0.036 to 0.062Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
Owens Corning
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
R-20
Image of detail
5.1.114
v1.7.3
Exterior and Interior Insulated Wall Assembly with Brick Ties Supporting Brick Veneer and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.230 to 0.410W/m²·K/0.041 to 0.072Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
1/2" Drywall
1/2" Sheathing
16" o.c.
3-5/8" Steel-framed
R-12
Image of detail
5.1.115
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-XPS 20 and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.157 to 0.330W/m²·K/0.028 to 0.058Btu/ft²·°F·hr
15 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.116
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-XPS 20 and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.154 to 0.324W/m²·K/0.027 to 0.057Btu/ft²·°F·hr
15 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.117
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-SPF 202 and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.149 to 0.617W/m²·K/0.026 to 0.109Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.118
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-SPF 202 and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.147 to 0.613W/m²·K/0.026 to 0.108Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.119
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-ISO V ALU and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.143 to 0.595W/m²·K/0.025 to 0.105Btu/ft²·°F·hr
30 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.120
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-ISO V ALU and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.140 to 0.592W/m²·K/0.025 to 0.104Btu/ft²·°F·hr
30 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.121
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Mineral Wool and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.159 to 0.370W/m²·K/0.028 to 0.065Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.122
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with Mineral Wool and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.156 to 0.364W/m²·K/0.028 to 0.064Btu/ft²·°F·hr
18 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.123
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-XPS 20 and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.124 to 0.325W/m²·K/0.022 to 0.057Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-20
Image of detail
5.1.124
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-XPS 20 and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.116 to 0.286W/m²·K/0.020 to 0.050Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
R-20
Image of detail
5.1.125
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-SPF 202 and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.108 to 0.309W/m²·K/0.019 to 0.054Btu/ft²·°F·hr
21 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-20
Image of detail
5.1.126
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-SPF 202 and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.101 to 0.273W/m²·K/0.018 to 0.048Btu/ft²·°F·hr
21 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
R-20
Image of detail
5.1.127
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.109 to 0.307W/m²·K/0.019 to 0.054Btu/ft²·°F·hr
39 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-20
Image of detail
5.1.128
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.103 to 0.272W/m²·K/0.018 to 0.048Btu/ft²·°F·hr
39 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
R-20
Image of detail
5.1.129
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Mineral Wool and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.126 to 0.339W/m²·K/0.022 to 0.060Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-20
Image of detail
5.1.130
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with Mineral Wool and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.118 to 0.297W/m²·K/0.021 to 0.052Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
R-20
Image of detail
5.1.131
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Protected SOPREMA SOPRA-ISO V ALU and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.120 to 0.325W/m²·K/0.021 to 0.057Btu/ft²·°F·hr
30 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.132
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with Protected SOPREMA SOPRA-ISO V ALU and ACS-S Thermal Clip Supporting Metal Cladding - Clear Wall
Clear Wall:
0.117 to 0.319W/m²·K/0.021 to 0.056Btu/ft²·°F·hr
30 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.133
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Protected SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.116 to 0.215W/m²·K/0.020 to 0.038Btu/ft²·°F·hr
27 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-20
Image of detail
5.1.134
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (24” o.c.) Wall Assembly with Protected SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-20 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.109 to 0.195W/m²·K/0.019 to 0.034Btu/ft²·°F·hr
27 detail scenarios
Steel-Framed
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
6" Steel-framed
R-20
Image of detail
5.1.135
v1.7.3
Exterior Insulated 6" x 1 5/8" Steel Stud (16" o.c.) Wall Assembly with U-Kon ND-062 Brackets and Vertical Rail System Supporting Metal Cladding - Clear Wall
Clear Wall:
0.140 to 0.400W/m²·K/0.025 to 0.070Btu/ft²·°F·hr
15 detail scenarios
Steel-Framed
ND-062
U-Kon
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.136
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken 2” ISO Clip System Supporting Horizontal Sub-girts – Clear Wall
Clear Wall:
0.330 to 0.540W/m²·K/0.058 to 0.095Btu/ft²·°F·hr
48 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.137
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Broken 2” ISO Clip System Supporting Vertical Sub-girts – Clear Wall
Clear Wall:
0.370 to 0.550W/m²·K/0.065 to 0.097Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.138
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken 2” ISO Clip System Supporting Horizontal Sub-girts and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.200 to 0.300W/m²·K/0.035 to 0.053Btu/ft²·°F·hr
48 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
R-19
Image of detail
5.1.139
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Broken 2” ISO Clip System Supporting Vertical Sub-girts and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.240 to 0.310W/m²·K/0.042 to 0.055Btu/ft²·°F·hr
16 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-19
Image of detail
5.1.140
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken 3.25” ISO Clip System Supporting Horizontal Sub-girts – Clear Wall
Clear Wall:
0.230 to 0.370W/m²·K/0.041 to 0.065Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.141
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Broken 3.25” ISO Clip System Supporting Vertical Sub-girts – Clear Wall
Clear Wall:
0.280 to 0.390W/m²·K/0.049 to 0.069Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.142
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken 3.25” ISO Clip System Supporting Horizontal Sub-girts and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.170 to 0.270W/m²·K/0.030 to 0.048Btu/ft²·°F·hr
24 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
R-12
Image of detail
5.1.143
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Broken 3.25” ISO Clip System Supporting Vertical Sub-girts and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.220 to 0.280W/m²·K/0.039 to 0.049Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-12
Image of detail
5.1.144
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Broken 3.25” ISO Clip System Supporting Horizontal L-girts and Vertical Z-girts – Clear Wall
Clear Wall:
0.170 to 0.250W/m²·K/0.030 to 0.044Btu/ft²·°F·hr
36 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.145
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken 4.75” ISO Clip System Supporting Horizontal L-girts – Clear Wall
Clear Wall:
0.170 to 0.300W/m²·K/0.030 to 0.053Btu/ft²·°F·hr
48 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.146
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken 4.75” ISO Clip System Supporting Vertical L-girts – Clear Wall
Clear Wall:
0.180 to 0.310W/m²·K/0.032 to 0.055Btu/ft²·°F·hr
48 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.147
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken 4.75” ISO Clip System Supporting Horizontal L-girts and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.130 to 0.210W/m²·K/0.023 to 0.037Btu/ft²·°F·hr
48 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
R-20
Image of detail
5.1.148
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken 4.75” ISO Clip System Supporting Vertical L-girts and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.140 to 0.220W/m²·K/0.025 to 0.039Btu/ft²·°F·hr
48 detail scenarios
Steel-Framed
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
6" Steel-framed
R-20
Image of detail
5.1.149
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with ROCKWOOL DuRock PUCCS NC System – Clear Wall
Clear Wall:
0.170 to 0.570W/m²·K/0.030 to 0.100Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.150
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-Girts (24” o.c.) Supporting Cladding and ROCKWOOL Cavityrock® Stone Wool Insulation – Clear Wall
Clear Wall:
0.370 to 0.850W/m²·K/0.065 to 0.150Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.151
v1.7.3
Exterior Insulated 6″ x 1 5/8″ Steel Stud (16″ o.c.) Wall Assembly with Vertical Clips (24″ o.c. and 36” o.c.) Supporting Cladding and ROCKWOOL Cavityrock® Stone Wool Insulation – Clear Wall
Clear Wall:
0.230 to 0.800W/m²·K/0.041 to 0.141Btu/ft²·°F·hr
14 detail scenarios
Steel-Framed
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.152
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8” Steel Stud (16″ o.c.) Wall Assembly with Vertical Clips (24″ o.c. and 36” o.c.) Supporting Cladding and ROCKWOOL Cavityrock® Stone Wool Insulation with R-22.5 ROCKWOOL Comfortbatt® Stone Wool Insulation in Stud Cavity– Clear Wall
Clear Wall:
0.170 to 0.350W/m²·K/0.030 to 0.062Btu/ft²·°F·hr
14 detail scenarios
Steel-Framed
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-22.5
Image of detail
5.1.153
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16″ o.c.) Wall Assembly with Steel Brick Anchors Supporting Brick Veneer and ROCKWOOL Cavityrock® Stone Wool Insulation – Clear Wall
Clear Wall:
0.380 to 0.740W/m²·K/0.067 to 0.130Btu/ft²·°F·hr
8 detail scenarios
Steel-Framed
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.154
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Galvanized Horizontal Intermittent Clips (24” o.c.) Supporting Metal Cladding and ROCKWOOL Cavityrock® Stone Wool Insulation– Clear Wall
Clear Wall:
0.300 to 0.650W/m²·K/0.053 to 0.114Btu/ft²·°F·hr
5 detail scenarios
Steel-Framed
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.155
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Steel Fasteners (12” o.c.) Supporting Cladding and ROCKWOOL Comfortboard® 110 Stone Wool Insulation – Clear Wall
Clear Wall:
0.350 to 0.810W/m²·K/0.062 to 0.143Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.156
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with High Compression Insulation and Through Insulation Stainless Steel Fasteners (16” o.c.) Supporting Cladding and ROCKWOOL Comfortboard® 110 Stone Wool Insulation with R-22.5 ROCKWOOL Comfortbatt® Stone Wool Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.200 to 0.340W/m²·K/0.035 to 0.060Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-22.5
Image of detail
5.1.157
v1.8.0
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Quik-Therm Matrix Insulation System – Clear Wall
Clear Wall:
0.110 to 0.300W/m²·K/0.019 to 0.053Btu/ft²·°F·hr
10 detail scenarios
Steel-Framed
Quik-Therm
16" o.c.
5/8" Drywall
5/8" Sheathing
6" Steel-framed
Uninsulated
Image of detail
5.1.158
v1.8.0
Exterior Insulated 6” x 1 5/8” Steel Stud Wall Assembly with U-Kon UCLIP and Horizontal Rail System – Clear Wall
Clear Wall:
0.244 to 0.450W/m²·K/0.043 to 0.079Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
U-Kon
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
Uninsulated
Image of detail
5.1.159
v1.8.0
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud Wall Assembly with Thermally Broken U-Kon UCLIP System Supporting Horizontal Sub-girts and R-20 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.177 to 0.272W/m²·K/0.031 to 0.048Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
U-Kon
1/2" Drywall
1/2" Sheathing
16" o.c.
6" Steel-framed
R-20
Image of detail
5.2.1
v1.7.3
Exposed Concrete Floor with an Exterior Insulated Steel-Framed Wall with Horizontal Z-Girts Supporting Metal Cladding
Intermediate Floor:
0.724 to 0.770W/m·K/0.418 to 0.445Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
Image of detail
5.2.2
v1.7.3
Insulated Top and Exposed Underside Concrete Projection with an Steel Stud Wall with Horizontal Z-girts Supporting Metal Cladding
Intermediate Floor:
0.680 to 0.770W/m·K/0.393 to 0.445Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Image of detail
5.2.3
v1.7.3
Insulated Concrete Projection with an Steel Stud Wall with Horizontal Z-girts Supporting Metal Cladding
Intermediate Floor:
0.496 to 0.770W/m·K/0.287 to 0.445Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Image of detail
5.2.4
v1.7.3
Exposed Concrete Floor with an Exterior Insulated Steel-Framed Wall with Horizontal Z-Girts Supporting Metal Cladding and Uninsulated Curb
Intermediate Floor:
1.011W/m·K/0.584Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.2.5
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Uninsulated Intermediate Floor Intersection with Uninsulated Curb
Intermediate Floor:
1.059W/m·K/0.612Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.2.6
v1.7.3
Exposed Concrete Floor with an Exterior Insulated Steel-Framed Wall with Horizontal Z-Girts Supporting Metal Cladding and Insulated Curb
Intermediate Floor:
0.840W/m·K/0.485Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.2.7
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Uninsulated Intermediate Floor Intersection with Insulated Curb
Intermediate Floor:
0.914W/m·K/0.528Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.2.8
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Vertical Z Girts (16” o.c.) Supporting Stucco Cladding and R-12 Batt Insulation in Stud Cavity – Uninsulated Intermediate Floor Intersection
Intermediate Floor:
1.149 to 1.151W/m·K/0.664 to 0.665Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.2.9
v1.7.3
Thermally Broken Slab Projection with Exterior Insulated Steel-Framed Wall with Drained EIFS
Intermediate Floor:
0.438W/m·K/0.253Btu/ft·°F·hr
1 detail scenario
Steel-Framed
EIFS
Schoeck
Image of detail
5.2.10
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with R-12 Batt Insulation in Stud Cavity – Isokorb CM20Thermally Broken Slab Projection without Concrete Curb
Intermediate Floor:
0.426W/m·K/0.246Btu/ft·°F·hr
1 detail scenario
Steel-Framed
EIFS
Schoeck
Image of detail
5.2.11
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Isokorb CM20 Thermally Broken Slab Projection with Uninsulated Curb
Intermediate Floor:
0.551W/m·K/0.318Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.12
v1.7.3
Thermally Broken Slab Projection with Un-Insulated Concrete Curb with Exterior Insulated Steel-Framed Wall with Horizontal Z-girts Supporting Metal Cladding
Intermediate Floor:
0.452W/m·K/0.261Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.13
v1.7.3
Thermally Broken Slab Projection with Insulated Concrete Curb with Exterior Insulated Steel-Framed Wall with Horizontal Z-girts Supporting Metal Cladding
Intermediate Floor:
0.203W/m·K/0.117Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.14
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Isokorb CM20 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.327W/m·K/0.189Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.15
v1.7.3
Exterior Insulated Intermediate Concrete Floor with Exterior Insulated Steel-Framed Wall with Drained EIFS
Intermediate Floor:
0.022 to 0.055W/m·K/0.013 to 0.032Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
EIFS
Image of detail
5.2.16
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly withR-12 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.056 to 0.132W/m·K/0.032 to 0.076Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
EIFS
Image of detail
5.2.17
v1.7.3
Exterior Insulated Intermediate Concrete Floor with an Exterior Insulated Steel-Framed Wall with Thermally Broken ISO Clip System Supporting Vertical Sub-girts
Intermediate Floor:
0.016 to 0.046W/m·K/0.009 to 0.027Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
ISO Clip
Image of detail
5.2.18
v1.7.3
Exterior Insulated Intermediate Concrete Floor with an Exterior Insulated Steel-Framed Wall with Thermally Broken ISO Clip System Supporting Horizontal Sub-girts
Intermediate Floor:
0.016 to 0.046W/m·K/0.009 to 0.027Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
ISO Clip
Image of detail
5.2.19
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Vertical Z-girts (16” o.c.) Supporting Stucco Cladding and R-12 Batt Insulation in Stud Cavity – Steel Framed Floor with Cross Cavity Flashing
Intermediate Floor:
0.275 to 0.309W/m·K/0.159 to 0.179Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.2.20
v1.7.3
Exterior Insulated Steel Stud Wall Assembly with Fiberglass Spacer and Through Insulation Fasteners Supporting Cladding – Insulated Intermediate Floor Intersection
Intermediate Floor:
0.060W/m·K/0.035Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.2.21
v1.7.3
Exterior Insulated Intermediate Concrete Floor with an Exterior Insulated Steel-Framed Wall with Thermally Broken Clips and Rail System Supporting Metal Cladding
Intermediate Floor:
0.050 to 0.070W/m·K/0.029 to 0.040Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
Engineered Assemblies
Image of detail
5.2.22
v1.7.3
Exterior Insulated Intermediate Concrete Floor with an Exterior Insulated Steel-Framed Wall with Fibre Reinforced Plastic Clips Supporting Metal Cladding
Intermediate Floor:
0.014 to 0.029W/m·K/0.008 to 0.017Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
TAC
Image of detail
5.2.23
v1.7.3
Exterior Insulated Intermediate Concrete Floor with a Thermally Isolated Aluminum Clip and Rail System Supporting Cladding
Intermediate Floor:
0.068 to 0.073W/m·K/0.039 to 0.042Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Longboard
Image of detail
5.2.24
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ o.c) Wall Assembly with Horizontal Z-Girts (24″ o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Framed Floor Intersection
Intermediate Floor:
0.117 to 0.842W/m·K/0.068 to 0.487Btu/ft·°F·hr
6 detail scenarios
Steel-Framed
Image of detail
5.2.25
v1.7.3
Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ o.c) Wall Assembly with Horizontal Z-Girts (24″ o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Framed Floor Intersection
Intermediate Floor:
0.842W/m·K/0.487Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.2.26
v1.7.3
Exterior and Interior Insulated Wall Assembly with Shelf Angle & Brick Ties Supporting Brick Veneer and R-12 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.464 to 0.544W/m·K/0.268 to 0.314Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.2.27
v1.7.3
Exterior and Interior Insulated Wall Assembly with Spaced Shelf Angle & Brick Ties Supporting Brick Veneer and R-12 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.290 to 0.376W/m·K/0.168 to 0.217Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.2.28
v1.7.3
Exterior and Interior Insulated Wall Assembly with Stainless Steel Shelf Angle & Brick Ties Supporting Brick Veneer and R-12 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.383 to 0.443W/m·K/0.221 to 0.256Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.2.29
v1.7.3
Exterior and Interior Insulated Wall Assembly with Thermally Broken Steel Shelf Angle & Brick Ties Supporting Brick Veneer and R-12 Batt Insulation in Stud Cavity – Slab Intersection
Intermediate Floor:
0.234 to 0.410W/m·K/0.135 to 0.237Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Armatherm
Image of detail
5.2.30
v1.7.3
Exterior Insulated Steel-Framed Wall with Horizontal Z-girts Supporting Metal Cladding - Armatherm 500 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.176 to 0.363W/m·K/0.102 to 0.210Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Armatherm
Image of detail
5.2.31
v1.7.3
Exterior Insulated Steel-Framed Wall with Armatherm Z-girts Supporting Metal Cladding - Armatherm 500-080 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.185W/m·K/0.107Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Armatherm
Image of detail
5.2.32
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Nvelope – Eko Thermobracket and NV1 Clip System Supporting Cladding and R-13 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.006 to 0.009W/m·K/0.003 to 0.005Btu/ft·°F·hr
6 detail scenarios
Steel-Framed
Nvelope
Image of detail
5.2.33
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with FERO Slotted Rap Ties (24” o.c.) and FERO FAST Thermal Bracket (48” o.c.) Supporting Brick Veneer – Intermediate Floor Intersection
Intermediate Floor:
0.074 to 0.608W/m·K/0.043 to 0.351Btu/ft·°F·hr
6 detail scenarios
Steel-Framed
FERO
Image of detail
5.2.34
v1.7.3
Owens Corning Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16’’ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding – Intermediate Floor Intersection
Intermediate Floor:
0.023 to 0.034W/m·K/0.013 to 0.020Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.2.35
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16’’ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and Owens Corning R-20 Batt in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.069 to 0.132W/m·K/0.040 to 0.076Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.2.36
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16’’ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and Owens Corning R-22.5 Batt in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.071 to 0.136W/m·K/0.041 to 0.079Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.2.37
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16’’ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and Owens Corning R-24 Batt in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.073 to 0.139W/m·K/0.042 to 0.080Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.2.38
v1.7.3
Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16’’ o.c.) Wall Assembly with FRP Vertical Brackets and Rail System Supporting Metal Cladding – Intermediate Floor Intersection
Intermediate Floor:
0.003W/m·K/0.002Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.2.39
v1.7.3
Exterior and Interior Insulated 2’’x6’’ Steel Stud (16’’ o.c.) Wall Assembly with FRP Vertical Brackets and Rail System Supporting Metal Cladding and R-19 Batt in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.015W/m·K/0.009Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.2.40
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding – Isokorb K65-V8 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.248W/m·K/0.143Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.41
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding – Isokorb K10-V6 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.130W/m·K/0.075Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.42
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding – Isokorb KXT65-V8 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.217W/m·K/0.125Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.43
v1.7.3
Exterior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding – Isokorb KXT15-V6 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.118W/m·K/0.068Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.44
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Isokorb K65-V8 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.339W/m·K/0.196Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.45
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Isokorb K10-V6 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.226W/m·K/0.131Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.46
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity - Isokorb KXT65-V8 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.278W/m·K/0.161Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.47
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Isokorb KXT15-V6 Thermally Broken Slab Projection with Insulated Curb
Intermediate Floor:
0.183W/m·K/0.106Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.2.48
v1.7.3
Exterior and Interior Insulated Wall Assembly with Stainless Steel Spaced Shelf Angle & Brick Ties Supporting Brick Veneer and R-12 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.239 to 0.343W/m·K/0.138 to 0.198Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.2.49
v1.7.3
Exterior and Interior Insulated Wall Assembly with Thermally Broken Stainless Steel Shelf Angle & Brick Ties Supporting Brick Veneer and R-12 Batt Insulation in Stud Cavity – Slab Intersection
Intermediate Floor:
0.185 to 0.394W/m·K/0.107 to 0.228Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.2.50
v1.7.3
Exterior and Interior Insulated Wall Assembly with Stainless Steel Spaced Shelf Angle Without Flashing & Brick Ties Supporting Brick Veneer - Intermediate Floor Intersection
Intermediate Floor:
0.103 to 0.201W/m·K/0.060 to 0.116Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.2.51
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with U-Kon ND 0-33 Bracket and Vertical Rail System Supporting Metal Cladding – Intermediate Floor Intersection
Intermediate Floor:
0.000 to 0.006W/m·K/0.000 to 0.003Btu/ft·°F·hr
Point Penetration:
0.022 to 0.042W/K/0.0 to 0.1Btu/°F·hr
20 detail scenarios
Steel-Framed
ND 0-33
U-Kon
Image of detail
5.2.52
v1.7.3
Exterior Insulated Steel-Framed Wall with Steel Clip System Supporting Metal Cladding - Concrete Projection with TBS Thermal Break and Exterior Insulated Curb
Intermediate Floor:
0.277W/m·K/0.160Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Thermal B
Image of detail
5.2.53
v1.7.3
Exterior Insulated Steel-Framed Wall with Steel Clip System Supporting Metal Cladding - Concrete Projection with TBS Thermal Break and Exterior Insulated Curb
Intermediate Floor:
0.288W/m·K/0.166Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Thermal B
Image of detail
5.2.54
v1.8.0
Exterior and Interior Insulated Wall Assembly with Brick Veneer and R-20 Batt in Stud Cavity - Exposed Concrete Intermediate Floor Intersection
Intermediate Floor:
0.624W/m·K/0.361Btu/ft·°F·hr
1 detail scenario
Steel-Framed
BSI / Owens Corning
Image of detail
5.3.1
v1.7.3
Aluminum Window Transition with a Steel Stud Assembly and Drained EIFS at Intermediate Concrete Floor
Glazing Transition:
0.277 to 0.324W/m·K/0.160 to 0.187Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
EIFS
Image of detail
5.3.2
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with R-12 Batt Insulation in Stud Cavity – Window and Intermediate Floor Intersection
Glazing Transition:
0.236 to 0.268W/m·K/0.136 to 0.155Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
EIFS
Image of detail
5.3.3
v1.7.3
Aluminum Window Transition with a Steel Stud Assembly, Aerogel Insulation around the Window Perimeter, and Drained EIFS at Intermediate Concrete Floor
Glazing Transition:
0.160 to 0.194W/m·K/0.092 to 0.112Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
EIFS
Image of detail
5.3.4
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with R-12 Batt Insulation in Stud Cavity – Window with Aerogel and Intermediate Floor Intersection
Glazing Transition:
0.144 to 0.178W/m·K/0.083 to 0.103Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
EIFS
Image of detail
5.3.5
v1.7.3
Aluminum Window Transition with an Exterior Insulated Steel-Framed Wall with Horizontal Z-Girts Supporting Metal Cladding at Intermediate Concrete Floor
Glazing Transition:
0.077 to 0.120W/m·K/0.044 to 0.069Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
Image of detail
5.3.6
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Window and Intermediate Floor Intersection
Glazing Transition:
0.196 to 0.225W/m·K/0.113 to 0.130Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.3.7
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Vertical Z Girts (16” o.c.) Supporting Stucco Cladding and R-12 Batt Insulation in Stud Cavity – Window and Intermediate Floor Intersection
Glazing Transition:
0.128 to 0.140W/m·K/0.074 to 0.081Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.3.8
v1.7.3
Interior Insulated Steel Frame Wall Assembly with Brick Cladding – Window Intersection
Glazing Transition:
0.278W/m·K/0.161Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.3.9
v1.7.3
Interior Insulated Steel Frame Wall Assembly with Brick Cladding – Window Intersection Aligned with Insulation
Glazing Transition:
0.092W/m·K/0.053Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.3.10
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding – Triple Glazed Aluminum Window & Intermediate Floor Intersection with Window Thermal Break Positioned in Steel Framing
Glazing Transition:
0.238 to 0.289W/m·K/0.138 to 0.167Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Image of detail
5.3.11
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and R-19 Batt Insulation in Stud Cavity – Triple Glazed Aluminum Window & Intermediate Floor Intersection with Window Thermal Break Positioned in Steel Framing
Glazing Transition:
0.191 to 0.223W/m·K/0.110 to 0.129Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Image of detail
5.3.12
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding – Triple Glazed Aluminum Curtain Wall & Intermediate Floor Intersection with Window Thermal Break Positioned in the Exterior Insulation
Glazing Transition:
0.050 to 0.081W/m·K/0.029 to 0.047Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Image of detail
5.3.13
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and R-19 Batt Insulation in Stud Cavity – Triple Glazed Aluminum Curtain Wall & Intermediate Floor Intersection with Window Thermal Break Positioned in the Exterior Insulation
Glazing Transition:
0.073 to 0.086W/m·K/0.042 to 0.050Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Image of detail
5.3.14
v1.7.3
Owens Corning Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding – Double Glazed Aluminum Window and Intermediate Floor Intersection
Glazing Transition:
0.315 to 0.374W/m·K/0.182 to 0.216Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.3.15
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and Owens Corning R-20 Batt in Stud Cavity – Double Glazed Aluminum Window and Intermediate Floor Intersection
Glazing Transition:
0.274 to 0.283W/m·K/0.158 to 0.164Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.3.16
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and Owens Corning R-22.5 Batt in Stud Cavity – Double Glazed Aluminum Window and Intermediate Floor Intersection
Glazing Transition:
0.275 to 0.282W/m·K/0.159 to 0.163Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.3.17
v1.7.3
Owens Corning Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding – Triple Glazed Aluminum Window and Intermediate Floor Intersection
Glazing Transition:
0.056 to 0.107W/m·K/0.032 to 0.062Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.3.18
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and Owens Corning R-20 Batt in Stud Cavity – Triple Glazed Aluminum Window and Intermediate Floor Intersection
Glazing Transition:
0.077 to 0.091W/m·K/0.044 to 0.053Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.3.19
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding and Owens Corning R-22.5 Batt in Stud Cavity – Triple Glazed Aluminum Window and Intermediate Floor Intersection
Glazing Transition:
0.078 to 0.091W/m·K/0.045 to 0.053Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Owens Corning
Image of detail
5.3.20
v1.7.3
Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with FRP and Thermally Broken Vertical Brackets and Rail System Supporting Metal Cladding – Triple Glazed Vinyl Window and Intermediate Floor Intersection
Glazing Transition:
0.019 to 0.024W/m·K/0.011 to 0.014Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.3.21
v1.7.3
Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with FRP and Thermally Broken Vertical Brackets and Rail System Supporting Metal Cladding with Aerogel Insulation Blanket – Triple Glazed Vinyl Window and Intermediate Floor Intersection
Glazing Transition:
0.010 to 0.016W/m·K/0.006 to 0.009Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.3.22
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with FRP and Thermally Broken Vertical Brackets and Rail System Supporting Metal Cladding and R-19 Batt in Stud Cavity – Triple Glazed Vinyl Window and Intermediate Floor Intersection
Glazing Transition:
0.041 to 0.046W/m·K/0.024 to 0.027Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.3.23
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16” o.c.) Wall Assembly with FRP and Thermally Broken Vertical Brackets and Rail System Supporting Metal Cladding with Aerogel Insulation Blanket and R-19 Batt in Stud Cavity– Triple Glazed Vinyl Window and Intermediate Floor Intersection
Glazing Transition:
0.030 to 0.035W/m·K/0.017 to 0.020Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.3.24
v1.7.3
Exterior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly – Triple Glazed Fiberglass Window intersection with Window Positioned in the Exterior Insulation
Glazing Transition:
0.014 to 0.029W/m·K/0.008 to 0.017Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Image of detail
5.3.25
v1.7.3
Exterior and Interior Insulated 6” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with R-20 Batt Insulation in Stud Cavity – Triple Glazed Fiberglass Window Intersection with Window Positioned in the Exterior Insulation
Glazing Transition:
0.025 to 0.029W/m·K/0.014 to 0.017Btu/ft·°F·hr
4 detail scenarios
Steel-Framed
Image of detail
5.3.26
v1.8.0
Aluminum Window Sill Intersection with Steel Framed Assembly and Brick Veneer
Glazing Transition:
0.078W/m·K/0.045Btu/ft·°F·hr
1 detail scenario
Steel-Framed
BSI / Owens Corning
Image of detail
5.3.27
v1.8.0
Aluminum Window Head Intersection with Steel Framed Assembly and Brick Veneer
Glazing Transition:
0.128W/m·K/0.074Btu/ft·°F·hr
1 detail scenario
Steel-Framed
BSI / Owens Corning
Image of detail
5.4.1
v1.7.3
Curtain-Wall Transition with Thermal Break aligned with Exterior Insulation
Glazing Transition:
0.079 to 0.088W/m·K/0.046 to 0.051Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
EIFS
Image of detail
5.4.2
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with R-12 Batt Insulation in Stud Cavity – Conventional Curtain Wall Transition
Glazing Transition:
0.067 to 0.074W/m·K/0.039 to 0.043Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
EIFS
Image of detail
5.4.3
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with R-12 Batt Insulation in Stud Cavity – Curtain Wall Transition
Glazing Transition:
0.030 to 0.120W/m·K/0.017 to 0.069Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Aerogel
Dow Corning
Image of detail
5.4.4
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ o.c) Wall Assembly with Horizontal Z-Girts (24″ o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Conventional Curtain Wall Intersection
Assembly Joint:
0.151 to 0.155W/m·K/0.087 to 0.090Btu/ft·°F·hr
3 detail scenarios
Curtain-Wall, Steel-Framed
Image of detail
5.4.5
v1.7.3
Curtain-Wall Transition with Exterior Insulated Concrete Wall and Steel Stud Assembly Supporting Metal Cladding
Glazing Transition:
0.222 to 0.275W/m·K/0.128 to 0.159Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
Image of detail
5.4.6
v1.7.3
Curtain-Wall Transition with Exterior Insulated Concrete Wall and Steel Stud Infill
Glazing Transition:
0.296 to 0.404W/m·K/0.171 to 0.233Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
Image of detail
5.5.1
v1.7.3
Partially Insulated Concrete Parapet with an Exterior Insulated Steel-Framed Wall with EIFS
Roof-to-Wall Transition:
0.456 to 0.511W/m·K/0.263 to 0.295Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry, Steel-Framed
EIFS
Image of detail
5.5.2
v1.7.3
Exterior Insulated Concrete Parapet with an Steel Stud Wall and Drained EIFS
Roof-to-Wall Transition:
0.238 to 0.380W/m·K/0.138 to 0.220Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry, Steel-Framed
EIFS
Image of detail
5.5.3
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with R-12 Batt Insulation in Stud Cavity – Concrete Parapet & Slab Intersection
Roof-to-Wall Transition:
0.451 to 0.514W/m·K/0.261 to 0.297Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
EIFS
Image of detail
5.5.4
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with R-12 Batt Insulation in Stud Cavity – Insulated Concrete Parapet & Slab Intersection
Roof-to-Wall Transition:
0.323 to 0.390W/m·K/0.187 to 0.225Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
EIFS
Image of detail
5.5.5
v1.7.3
Exterior Insulated Concrete Parapet with an Exterior Insulated Steel-Framed Wall with Horizontal Z-Girts Supporting Metal Cladding and Concrete Roof Deck
Roof-to-Wall Transition:
0.452 to 0.541W/m·K/0.261 to 0.313Btu/ft·°F·hr
5 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.5.6
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Concrete Parapet and Slab Intersection
Roof-to-Wall Transition:
0.768 to 0.776W/m·K/0.444 to 0.448Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.5.7
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Vertical Z Girts (16” o.c.) Supporting Stucco Cladding and R-12 Batt Insulation in Stud Cavity – Concrete Parapet & Slab Intersection
Roof-to-Wall Transition:
0.770 to 0.785W/m·K/0.445 to 0.454Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.5.8
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Intermittent Vertical Z Girts (16” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Concrete Roof Deck at Continuous Concrete Parapet
Roof-to-Wall Transition:
0.785W/m·K/0.454Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.5.9
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Intermittent Vertical Z Girts (16” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Concrete Roof Deck at Isokorb AXT1 Thermally Broken Concrete Parapet
Roof-to-Wall Transition:
0.100W/m·K/0.058Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry, Steel-Framed
Schoeck
Image of detail
5.5.10
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ o.c) Wall Assembly with Horizontal Z-Girts (24″ o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Steel Roof Deck with Open Web Steel Joist & Parapet Intersection
Roof-to-Wall Transition:
0.304 to 0.500W/m·K/0.176 to 0.289Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.5.11
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ o.c) Wall Assembly with Horizontal Z-Girts (24″ o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Steel Roof Deck with Open Web Steel Joist & Parapet Intersection with Thermal Break under Parapet Stud Cavity
Roof-to-Wall Transition:
0.260W/m·K/0.151Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Armatherm
Image of detail
5.5.12
v1.7.3
Owens Corning Exterior Insulated 2″ x 6″ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding – Concrete Parapet and Roof Intersection
Roof-to-Wall Transition:
0.701 to 0.704W/m·K/0.405 to 0.407Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Owens Corning
Image of detail
5.5.13
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding and Owens Corning R-20 Batt in Stud Cavity – Concrete Parapet and Roof Intersection
Roof-to-Wall Transition:
0.657 to 0.671W/m·K/0.380 to 0.388Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Owens Corning
Image of detail
5.5.14
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding and Owens Corning R-22.5 Batt in Stud Cavity – Concrete Parapet and Roof Intersection
Roof-to-Wall Transition:
0.656 to 0.671W/m·K/0.379 to 0.388Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Owens Corning
Image of detail
5.5.15
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding and Owens Corning R-24 Batt in Stud Cavity – Concrete Parapet and Roof Intersection
Roof-to-Wall Transition:
0.657 to 0.672W/m·K/0.380 to 0.388Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Owens Corning
Image of detail
5.5.16
v1.7.3
Owens Corning Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding – Concrete Roof Deck at Isokorb AXTI Thermal Broken Concrete Parapet
Roof-to-Wall Transition:
0.194 to 0.225W/m·K/0.112 to 0.130Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Owens Corning
Schoeck
Image of detail
5.5.17
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding and Owens Corning R-20 Batt in Stud Cavity – Concrete Roof Deck at Isokorb AXTI Thermal Broken Concrete Parapet
Roof-to-Wall Transition:
0.196 to 0.241W/m·K/0.113 to 0.139Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Owens Corning
Schoeck
Image of detail
5.5.18
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding and Owens Corning R-22.5 Batt in Stud Cavity – Concrete Roof Deck at Isokorb AXTI Thermal Broken Concrete Parapet
Roof-to-Wall Transition:
0.196 to 0.242W/m·K/0.113 to 0.140Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Owens Corning
Schoeck
Image of detail
5.5.19
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding and Owens Corning R-24 Batt in Stud Cavity – Concrete Roof Deck at Isokorb AXTI Thermal Broken Concrete Parapet
Roof-to-Wall Transition:
0.199 to 0.244W/m·K/0.115 to 0.141Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Owens Corning
Schoeck
Image of detail
5.5.20
v1.7.3
Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with FRP and Thermally Broken Vertical Brackets and Rail System Supporting Metal Cladding – Concrete Roof Deck at Isokorb AXT Thermally Broken Concrete Parapet
Roof-to-Wall Transition:
0.110 to 0.171W/m·K/0.064 to 0.099Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.5.21
v1.7.3
Exterior and Interior Insulated 2″ x 6″ Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System Supporting Metal Cladding and R-19 Batt in Stud Cavity – Concrete Roof Deck at Isokorb AXT Thermally Broken Concrete Parapet
Roof-to-Wall Transition:
0.111 to 0.171W/m·K/0.064 to 0.099Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.5.22
v1.7.3
Exterior Insulated 6″ x 1 5/8” Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding – Concrete Parapet and Roof Intersection
Roof-to-Wall Transition:
0.616 to 0.700W/m·K/0.356 to 0.404Btu/ft·°F·hr
8 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.5.23
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8”Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding and R-20 Batt in Stud Cavity – Concrete Parapet and Roof Intersection
Roof-to-Wall Transition:
0.585 to 0.660W/m·K/0.338 to 0.381Btu/ft·°F·hr
8 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.5.24
v1.7.3
Exterior Insulated 6″ x 1 5/8” Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding – Concrete Roof Deck at Isokorb AXTI Thermal Broken Concrete Parapet
Roof-to-Wall Transition:
0.181 to 0.209W/m·K/0.105 to 0.121Btu/ft·°F·hr
8 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Schoeck
Image of detail
5.5.25
v1.7.3
Exterior and Interior Insulated 6″ x 1 5/8” Steel Stud (16″ o.c.) Wall Assembly with Thermally Isolated Vertical Brackets and Rail System (24″ o.c.) Supporting Metal Cladding and R-20 Batt in Stud Cavity – Concrete Roof Deck at Isokorb AXTI Thermal Broken Concrete Parapet
Roof-to-Wall Transition:
0.187 to 0.223W/m·K/0.108 to 0.129Btu/ft·°F·hr
8 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Schoeck
Image of detail
5.5.26
v1.8.0
Exterior and Interior Insulated Steel-Framed Wall Assembly with Brick Veneer and R-20 Batt in Stud Cavity - Insulated Concrete Parapet & Roof Intersection
Roof-to-Wall Transition:
0.188 to 0.217W/m·K/0.109 to 0.125Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
BSI / Owens Corning
Image of detail
5.6.1
v1.7.3
Exterior Insulated Outside Corner Transition with Steel Stud Assembly and Drained EIFS
Corner:
0.076 to 0.105W/m·K/0.044 to 0.061Btu/ft·°F·hr
3 detail scenarios
Steel-Framed
EIFS
Image of detail
5.6.2
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Drained EIFS Wall Assembly with R-12 Batt Insulation in Stud Cavity – Corner Intersection
Corner:
0.054 to 0.067W/m·K/0.031 to 0.039Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
EIFS
Image of detail
5.6.3
v1.7.3
Exterior Insulated Steel-Framed Wall Outside Corner Transition with an Exterior Insulated Steel-Framed Wall with Horizontal Z-Girts Supporting Metal Cladding
Corner:
0.154 to 0.160W/m·K/0.089 to 0.092Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.6.4
v1.7.3
Exterior Insulated Steel-Framed Wall Outside Corner Transition with an Exterior Insulated Steel-Framed Wall with Reduced Framing and Horizontal Z-Girts Supporting Metal Cladding
Corner:
0.147 to 0.153W/m·K/0.085 to 0.088Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.6.5
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Corner Intersection
Corner:
0.170 to 0.181W/m·K/0.098 to 0.105Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.6.6
v1.7.3
Inside Corner Window-Wall Transition with Exterior Insulated Steel-Framed Wall
Corner:
0.207 to 0.217W/m·K/0.120 to 0.125Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.6.7
v1.7.3
Inside Corner Window-Wall Transition with Interior and Exterior Insulated Steel-Framed Wall and Spray Foam Insulation behind Back Pan
Corner:
0.237 to 0.238W/m·K/0.137Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.7.1
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ o.c) Wall Assembly with Horizontal Z-Girts (24″ o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Column & Cantilever Beam Intersection (Canopy Support)
Assembly Joint:
0.040 to 0.060W/m·K/0.023 to 0.035Btu/ft·°F·hr
Point Penetration:
0.080W/K/0.2Btu/°F·hr
6 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Image of detail
5.7.2
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Floor Intersection with Uninterrupted Beam
Point Penetration:
0.920W/K/1.7Btu/°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.7.3
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Floor Intersection with Isolator Pad
Point Penetration:
0.970 to 1.190W/K/1.8 to 2.3Btu/°F·hr
5 detail scenarios
Steel-Framed
Schoeck
Image of detail
5.7.4
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Floor Intersection with Isokorb S22 Thermally Broken Beam
Point Penetration:
0.480W/K/0.9Btu/°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.7.5
v1.7.3
Steel-to-Concrete Through Beam Connection with Exterior Insulated Steel-Framed Wall Assmebly with Intermittent Vertical Z-Girts Supporting Metal Cladding
Point Penetration:
0.660W/K/1.3Btu/°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.7.6
v1.7.3
Thermally Broken Steel-to-Concrete Through Beam Connection with Isolator Pad and Exterior Insulated Steel-Framed Wall Assmebly with Intermittent Vertical Z-Girts
Point Penetration:
0.480W/K/0.9Btu/°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.7.7
v1.7.3
Manufactured Thermal Break Steel-to-Concrete Through Beam Connection with Exterior Insulated Steel-Framed Wall Assmebly with Intermittent Vertical Z-Girts
Point Penetration:
0.040W/K/0.1Btu/°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.7.8
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Floor Intersection with Beam Thermal Break
Point Penetration:
0.380 to 0.830W/K/0.7 to 1.6Btu/°F·hr
4 detail scenarios
Steel-Framed
Armatherm
Image of detail
5.7.9
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Floor Intersection with Aerolon Coating
Point Penetration:
0.620W/K/1.2Btu/°F·hr
1 detail scenario
Steel-Framed
Tnemec Aerolon
Image of detail
5.7.10
v1.7.3
Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16’’ o.c.) Wall Assembly with FRP Vertical Brackets and Rail System Supporting Metal Cladding – Structural Steel Column & Knife Edge Cable Support Intersection
Point Penetration:
0.147W/K/0.3Btu/°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.7.11
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16’’ o.c.) Wall Assembly with FRP Vertical Brackets and Rail System Supporting Metal Cladding with R-19 Batt in Stud Cavity – Structural Steel Column & Knife Edge Cable Support Intersection
Point Penetration:
0.071W/K/0.1Btu/°F·hr
1 detail scenario
Steel-Framed
Image of detail
5.7.12
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Floor Intersection with Thermal Isolator Pad
Point Penetration:
0.486 to 0.767W/K/0.9 to 1.5Btu/°F·hr
6 detail scenarios
Steel-Framed
Schoeck
Image of detail
5.7.13
v1.7.3
Exterior and Interior Insulated 3 5/8” x 1 5/8” Steel Stud (16” o.c.) Wall Assembly with Horizontal Z-girts (24” o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Structural Steel Floor Intersection with Isokorb KST System Thermally Broken Beam
Point Penetration:
0.243W/K/0.5Btu/°F·hr
1 detail scenario
Steel-Framed
Schoeck
Image of detail
5.8.1
v1.7.3
Exterior and Interior Insulated 3 5/8″ x 1 5/8″ Steel Stud (16″ o.c) Wall Assembly with Horizontal Z-Girts (24″ o.c.) Supporting Metal Cladding and R-12 Batt Insulation in Stud Cavity – Interior Wall Intersection
Interior to Exterior Wall:
0.013 to 0.039W/m·K/0.008 to 0.023Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
5.8.2
v1.7.3
Exterior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with FRP Vertical Brackets and Rail System Supporting Metal Cladding – At-Grade Foundation Wall Intersection
Foundation/Grade:
0.102 to 0.506W/m·K/0.059 to 0.292Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.8.3
v1.7.3
Exterior and Interior Insulated 6’’x 1 5/8’’ Steel Stud (16″ o.c.) Wall Assembly with FRP Vertical Brackets and Rail System Supporting Metal Cladding and R19 Batt Insulation in Stud Cavity – At-Grade Foundation Wall Intersection
Foundation/Grade:
0.101 to 0.468W/m·K/0.058 to 0.270Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
5.8.4
v1.8.0
Exterior and Interior Insulated Steel-Framed Wall Assembly with Brick Veneer and R-20 Batt in Stud Cavity - At Grade Intersection
Foundation/Grade:
0.574W/m·K/0.332Btu/ft·°F·hr
1 detail scenario
Steel-Framed
BSI / Owens Corning
Image of detail
6.1.1
v1.7.3
Insulated Metal Panels with Vertical Connection Joint and Steel Structure
Clear Wall:
0.270W/m²·K/0.048Btu/ft²·°F·hr
1 detail scenario
Metal Building
Image of detail
6.1.2
v1.7.3
Vertical Insulated Metal Panel – Metal Stack Joint and Support Girt Back/Hat Track Backup Wall
Assembly Joint:
0.266W/m·K/0.154Btu/ft·°F·hr
1 detail scenario
Metal Building
Image of detail
6.1.3
v1.7.3
Insulated Metal Panels with Horizontal Connection Joint and Steel Stud Back Up
Clear Wall:
0.290W/m²·K/0.051Btu/ft²·°F·hr
1 detail scenario
Metal Building
Image of detail
6.1.4
v1.7.3
Horizontal Insulated Metal Panel – Vertical Gasket Joint with Steel Stud Backup Wall
Assembly Joint:
0.055W/m·K/0.032Btu/ft·°F·hr
1 detail scenario
Metal Building
Image of detail
6.1.5
v1.7.3
Insulated Structural Sheet Steel Wall with Continuous Notched Z-bar and Thermal Block.
Clear Wall:
0.247 to 0.260W/m²·K/0.044 to 0.046Btu/ft²·°F·hr
3 detail scenarios
Metal Building
CSSBI
Image of detail
6.1.6
v1.7.3
Insulated Structural Sheet Steel Wall with Intermittent Notched Z-bar.
Clear Wall:
0.269W/m²·K/0.047Btu/ft²·°F·hr
1 detail scenario
Metal Building
CSSBI
Image of detail
6.1.7
v1.7.3
Insulated Structural Sheet Steel Wall with Thermal Chairs, 24" Horizontal Spacing
Clear Wall:
0.229 to 0.233W/m²·K/0.040Btu/ft²·°F·hr
3 detail scenarios
Metal Building
CSSBI
Image of detail
6.1.8
v1.7.3
Insulated Structural Sheet Steel Wall with Continuous Notched Z-bar and Ceramic Blanket.
Clear Wall:
0.400W/m²·K/0.070Btu/ft²·°F·hr
1 detail scenario
Metal Building
CSSBI
Image of detail
6.1.9
v1.7.3
Exterior Insulated QuadCore Panel Wall Assembly supported by HSS framing (60” o.c.), finished with 1 5/8” Steel Stud and 1/2” Gypsum – Clear Wall
Assembly Joint:
0.012 to 0.023W/m·K/0.007 to 0.013Btu/ft·°F·hr
Clear Wall:
0.130 to 0.210W/m²·K/0.023 to 0.037Btu/ft²·°F·hr
9 detail scenarios
Curtain-Wall and Steel-Framed
Flynn
Speedwall
Image of detail
6.1.10
v1.7.3
Exterior and Interior Insulated QuadCore SpeedwallTM Panel Wall Assembly supported by Curtain Wall framing (60” o.c.), finished with 1 5/8” Steel Stud and 1/2” Gypsum – Clear Wall
Assembly Joint:
0.006 to 0.035W/m·K/0.003 to 0.020Btu/ft·°F·hr
Clear Wall:
0.140 to 0.170W/m²·K/0.025 to 0.030Btu/ft²·°F·hr
6 detail scenarios
Curtain-Wall and Steel-Framed
Flynn
Speedwall
Image of detail
6.2.1
v1.7.3
Continuous Metal Stack Joint of Insulated Metal Panel at Composite Floor
Intermediate Floor:
0.323W/m·K/0.187Btu/ft·°F·hr
1 detail scenario
Metal Building
Image of detail
6.2.2
v1.7.3
Horizontal Joint of Insulated Metal Panel at Composite Floor
Intermediate Floor:
0.027W/m·K/0.016Btu/ft·°F·hr
1 detail scenario
Metal Building
Image of detail
6.3.1
v1.7.3
Metal Closure Bypasses Thermal Insulation at Aluminum Window Perimeter
Glazing Transition:
0.505W/m·K/0.292Btu/ft·°F·hr
1 detail scenario
Metal Building
Image of detail
6.3.2
v1.7.3
Metal Closure Bypasses Thermal Insulation at Aluminum Window Perimeter
Glazing Transition:
0.454W/m·K/0.262Btu/ft·°F·hr
1 detail scenario
Metal Building
Image of detail
6.3.3
v1.7.4
Exterior Insulated QuadCore SpeedwallTM Panel Wall Assembly supported by Curtain Wall framing (60” o.c.), finished with 1 5/8” Steel Stud and 1/2” Gypsum – Double Glazed Aluminum Window to Wall Transition
Glazing Transition:
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4 detail scenarios
Curtain-Wall and Steel-Framed
Flynn
Speedwall
Image of detail
6.3.4
v1.7.4
Exterior Insulated QuadCore SpeedwallTM Panel Wall Assembly supported by Curtain Wall framing (60” o.c.), finished with 1 5/8” Steel Stud and 1/2” Gypsum – Triple Glazed Aluminum Window to Wall Transition
Glazing Transition:
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6 detail scenarios
Curtain-Wall and Steel-Framed
Flynn
Speedwall
Image of detail
6.3.5
v1.7.4
Exterior and Interior Insulated QuadCore SpeedwallTM Panel Wall Assembly supported by Curtain Wall framing (60” o.c.), finished with 1 5/8” Steel Stud and 1/2” Gypsum – Triple Glazed Aluminum Window to Wall Transition
Glazing Transition:
Rendering error!
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2 detail scenarios
Curtain-Wall and Steel-Framed
Flynn
Speedwall
Image of detail
6.4.1
v1.7.3
Vertical Insulated Metal Panel at Parapet with Steel Roof Deck and Open Web Steel Joist
Roof-to-Wall Transition:
0.489W/m·K/0.283Btu/ft·°F·hr
1 detail scenario
Metal Building, Steel-Framed
Image of detail
6.4.2
v1.7.3
Horizontal Insulated Metal Panel at Parapet with Steel Roof Deck and Open Web Steel Joist
Roof-to-Wall Transition:
0.410W/m·K/0.237Btu/ft·°F·hr
1 detail scenario
Metal Building, Steel-Framed
Image of detail
6.5.1
v1.7.3
Exterior Insulated Metal Panel Outside Corner Transition with Vertical Insulated Metal Panel with Steel Structure
Corner:
0.156W/m·K/0.090Btu/ft·°F·hr
1 detail scenario
Metal Building
Image of detail
6.5.2
v1.7.3
Exterior Insulated Metal Panel Outside Corner Transition with Horizontal Insulated Metal Panel with Steel Structure
Corner:
0.064W/m·K/0.037Btu/ft·°F·hr
1 detail scenario
Metal Building
Image of detail
7.1.1
v1.7.3
Exterior Insulated Concrete Mass Wall with Drained EIFS
Clear Wall:
0.320W/m²·K/0.056Btu/ft²·°F·hr
1 detail scenario
Concrete and Mass Masonry
EIFS
1/2" Drywall
Poured-in-place concrete
Uninsulated
Image of detail
7.1.2
v1.7.3
Exterior Insulated Concrete Mass Wall Assembly with 1/4 inch (6 mm) Stainless Steel Brackets Supporting 1-1/4” Stone Panels – Clear Wall
Clear Wall:
0.246 to 0.859W/m²·K/0.043 to 0.151Btu/ft²·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Poured-in-place concrete
Uninsulated
Image of detail
7.1.3
v1.7.3
Exterior Insulated Concrete Block Assembly with Thermally Broken ISO Clip System Supporting Horizontal Sub-girts
Clear Wall:
0.228 to 0.374W/m²·K/0.040 to 0.066Btu/ft²·°F·hr
36 detail scenarios
Concrete and Mass Masonry
ISO Clip
1/2" Drywall
Concrete block
Uninsulated
Image of detail
7.1.4
v1.7.3
Exterior Insulated Concrete Mass Wall with Nvelope NV1 Clip System supporting Cladding
Clear Wall:
0.250 to 0.560W/m²·K/0.044 to 0.099Btu/ft²·°F·hr
15 detail scenarios
Concrete and Mass Masonry
Nvelope
Poured-in-place concrete
Uninsulated
Image of detail
7.1.5
v1.7.3
Exterior Insulated Concrete Block Assembly with Nvelope NV1 Clip System supporting Cladding
Clear Wall:
0.240 to 0.520W/m²·K/0.042 to 0.092Btu/ft²·°F·hr
15 detail scenarios
Concrete and Mass Masonry
Nvelope
1/2" Drywall
Concrete block
Uninsulated
Image of detail
7.1.6
v1.7.3
Exterior Insulated Concre Block Assembly with Hohmann & Barnard Masonry Zinc 2-Seal Anchor Supporting Brick Veneer
Clear Wall:
0.327 to 0.800W/m²·K/0.058 to 0.141Btu/ft²·°F·hr
12 detail scenarios
Concrete and Mass Masonry
Hohmann & Barnard
1/2" Drywall
Poured-in-place concrete
Uninsulated
Image of detail
7.1.7
v1.7.3
Exterior Insulated Concre Block Assembly with Hohmann & Barnard Masonry Stainless Steel 2-Seal Thermal Wing Nut Anchor Supporting Brick Veneer
Clear Wall:
0.286 to 0.733W/m²·K/0.050 to 0.129Btu/ft²·°F·hr
12 detail scenarios
Concrete and Mass Masonry
Hohmann & Barnard
1/2" Drywall
Poured-in-place concrete
Uninsulated
Image of detail
7.1.8
v1.7.3
Pre-Cast Sandwich Panel Wall Assembly with Concrete Panel Joints - Clear Wall
Assembly Joint:
0.358 to 0.370W/m·K/0.207 to 0.214Btu/ft·°F·hr
Clear Wall:
0.250 to 0.440W/m²·K/0.044 to 0.077Btu/ft²·°F·hr
6 detail scenarios
Concrete and Mass Masonry
Image of detail
7.1.9
v1.7.3
Precast Sandwich Panel Wall Assembly with Tigerloc Thermally Broken Panel Joints – Clear Wall
Assembly Joint:
0.145 to 0.171W/m·K/0.084 to 0.099Btu/ft·°F·hr
Clear Wall:
0.250 to 0.440W/m²·K/0.044 to 0.077Btu/ft²·°F·hr
6 detail scenarios
Concrete and Mass Masonry
Tigerloc
Image of detail
7.1.10
v1.7.3
Precast Concrete Sandwich Panel Wall Assembly with FRP Connectors – Clear Wall
Assembly Joint:
0.000W/m·K/0.000Btu/ft·°F·hr
Clear Wall:
0.100 to 0.140W/m²·K/0.018 to 0.025Btu/ft²·°F·hr
9 detail scenarios
Concrete and Mass Masonry
Image of detail
7.1.11
v1.7.3
Exterior Insulated Concrete Block Wall with Armadillo FRR Horizontal Z-Girts Supporting Cladding – Clear Wall
Clear Wall:
0.210 to 0.420W/m²·K/0.037 to 0.074Btu/ft²·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Armatherm
1/2" Drywall
Concrete block
Uninsulated
Image of detail
7.1.12
v1.7.3
Exterior Insulated Concrete Block Wall with Vertical Clips Supporting Cladding – Clear Wall
Clear Wall:
0.290 to 0.560W/m²·K/0.051 to 0.099Btu/ft²·°F·hr
6 detail scenarios
Concrete and Mass Masonry
1/2" Drywall
Concrete block
Uninsulated
Image of detail
7.1.13
v1.7.3
Exterior Insulated Concrete Block Assembly with Brick Ties Supporting Brick Veneer - Clear Wall
Clear Wall:
0.180 to 0.550W/m²·K/0.032 to 0.097Btu/ft²·°F·hr
8 detail scenarios
Concrete and Mass Masonry
1/2" Drywall
Concrete block
Uninsulated
Image of detail
7.1.14
v1.7.3
Interior Insulated Concrete Mass Wall with Steel-Framed Wall Supporting Interior Finish and no Insulation in Stud Cavity
Clear Wall:
0.320 to 0.440W/m²·K/0.056 to 0.077Btu/ft²·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.1.15
v1.7.3
Precast Sandwich Panel Wall Assembly with Steel Connectors and 3 5/8” x 1 5/8” Steel Stud (16” o.c.) – Clear Wall
Assembly Joint:
0.046 to 1.130W/m·K/0.027 to 0.653Btu/ft·°F·hr
Clear Wall:
0.254 to 0.470W/m²·K/0.045 to 0.083Btu/ft²·°F·hr
11 detail scenarios
Concrete and Mass Masonry
Image of detail
7.1.16
v1.7.3
Exterior Insulated Concrete Mass Wall Assembly with 3/8 inch (9.5 mm Stainless Steel Brackets Supporting 3” Stone Panels – Clear Wall
Clear Wall:
0.232 to 0.845W/m²·K/0.041 to 0.149Btu/ft²·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Poured-in-place concrete
Uninsulated
Image of detail
7.1.17
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with SOPREMA SOPRA-XPS 20 and ACS-S Thermal Clip (16” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.159 to 0.340W/m²·K/0.028 to 0.060Btu/ft²·°F·hr
15 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.18
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with SOPREMA SOPRA-XPS 20 and ACS-S Thermal Clip (24” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.157 to 0.334W/m²·K/0.028 to 0.059Btu/ft²·°F·hr
15 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.19
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with SOPREMA SOPRA-SPF 202 and ACS-S Thermal Clip (16” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.151 to 0.654W/m²·K/0.027 to 0.115Btu/ft²·°F·hr
18 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.20
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with SOPREMA SOPRA-SPF 202 and ACS-S Thermal Clip (24” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.149 to 0.652W/m²·K/0.026 to 0.115Btu/ft²·°F·hr
18 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.21
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with SOPREMA SOPRA-ISO V ALU and ACS-S Thermal Clip (16” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.145 to 0.630W/m²·K/0.026 to 0.111Btu/ft²·°F·hr
30 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.22
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with SOPREMA SOPRA-ISO V ALU and ACS-S Thermal Clip (24” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.142 to 0.627W/m²·K/0.025 to 0.110Btu/ft²·°F·hr
30 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.23
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Mineral Wool and ACS-S Thermal Clip (16” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.161 to 0.383W/m²·K/0.028 to 0.068Btu/ft²·°F·hr
18 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.24
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Mineral Wool and ACS-S Thermal Clip (24” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.159 to 0.377W/m²·K/0.028 to 0.066Btu/ft²·°F·hr
18 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.25
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Protected SOPREMA SOPRA-ISO V ALU and ACS-S Thermal Clip (16” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.138 to 0.335W/m²·K/0.024 to 0.059Btu/ft²·°F·hr
27 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.26
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Protected SOPREMA SOPRA-ISO V ALU and ACS-S Thermal Clip (24” o.c. Horizontal) Supporting Metal Cladding - Clear Wall
Clear Wall:
0.135 to 0.329W/m²·K/0.024 to 0.058Btu/ft²·°F·hr
27 detail scenarios
Concrete and Mass Masonry
ACS Composite Systems
SOPREMA
Concrete block
Uninsulated
Image of detail
7.1.27
v1.7.3
Exterior Insulated Concrete Mass Wall with 1 5/8” x 1 5/8” Steel Stud (16” o.c.) and Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding – Clear Wall
Clear Wall:
0.310 to 0.520W/m²·K/0.055 to 0.092Btu/ft²·°F·hr
4 detail scenarios
Concrete and Mass Masonry
1/2" Drywall
Poured-in-place concrete
Uninsulated
Image of detail
7.1.28
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Thermally Broken 2” ISO Clip System Supporting Horizontal Sub-girts – Clear Wall
Clear Wall:
0.340 to 0.570W/m²·K/0.060 to 0.100Btu/ft²·°F·hr
48 detail scenarios
Concrete and Mass Masonry
ISO Clip
Concrete block
Uninsulated
Image of detail
7.1.29
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Thermally Broken 2” ISO Clip System Supporting Vertical Sub-girts – Clear Wall
Clear Wall:
0.380 to 0.590W/m²·K/0.067 to 0.104Btu/ft²·°F·hr
16 detail scenarios
Concrete and Mass Masonry
ISO Clip
Concrete block
Uninsulated
Image of detail
7.1.30
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Thermally Broken 3.25” ISO Clip System Supporting Horizontal Sub-girts – Clear Wall
Clear Wall:
0.230 to 0.390W/m²·K/0.041 to 0.069Btu/ft²·°F·hr
36 detail scenarios
Concrete and Mass Masonry
ISO Clip
Concrete block
Uninsulated
Image of detail
7.1.31
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Thermally Broken 4.75” ISO Clip System Supporting Horizontal L-girts – Clear Wall
Clear Wall:
0.029 to 0.310W/m²·K/0.005 to 0.055Btu/ft²·°F·hr
48 detail scenarios
Concrete and Mass Masonry
ISO Clip
Concrete block
Uninsulated
Image of detail
7.1.32
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Thermally Broken 4.75” ISO Clip System Supporting Vertical L-girts – Clear Wall
Clear Wall:
0.190 to 0.330W/m²·K/0.033 to 0.058Btu/ft²·°F·hr
48 detail scenarios
Concrete and Mass Masonry
ISO Clip
Concrete block
Uninsulated
Image of detail
7.1.33
v1.7.3
Exterior Insulated Concrete Block Wall with Vertical Clips and ROCKWOOL Stone Wool Insulation Supporting Cladding – Clear Wall
Clear Wall:
0.280 to 0.550W/m²·K/0.049 to 0.097Btu/ft²·°F·hr
6 detail scenarios
Concrete and Mass Masonry
ROCKWOOL
Concrete block
Uninsulated
Image of detail
7.1.34
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with ROCKWOOL Stone Wool Insulation Brick Ties Supporting Brick Veneer – Clear Wall
Clear Wall:
0.200 to 0.580W/m²·K/0.035 to 0.102Btu/ft²·°F·hr
8 detail scenarios
Concrete and Mass Masonry
ROCKWOOL
Concrete block
Uninsulated
Image of detail
7.1.35
v1.7.3
Interior Insulated Concrete Block Wall Assembly with Wood Studs and ROCKWOOL Stone Wool Insulation – Clear Wall
Clear Wall:
0.240W/m²·K/0.042Btu/ft²·°F·hr
1 detail scenario
Concrete and Mass Masonry
ROCKWOOL
Concrete block
Uninsulated
Image of detail
7.1.36
v1.8.0
Interior Insulated Concrete Mass Wall Assembly utilizing Quik-Therm Connect Insulation with Metalized Polymer Facer
Clear Wall:
0.195 to 0.529W/m²·K/0.034 to 0.093Btu/ft²·°F·hr
32 detail scenarios
Concrete and Mass Masonry
Quik-Therm
1/2" Drywall
Poured-in-place concrete
Uninsulated
Image of detail
7.1.37
v1.8.0
Interior Insulated Concrete Mass Wall Assembly with Rigid Insulation and Batt Insulation in Steel-stud cavity
Clear Wall:
0.197 to 0.650W/m²·K/0.035 to 0.114Btu/ft²·°F·hr
8 detail scenarios
Concrete and Mass Masonry
1/2" Drywall
Poured-in-place concrete
R-12
R-20
Image of detail
7.2.1
v1.7.3
Exterior Insulated Intermediate Concrete Floor with Concrete Wall with Drained EIFS
Intermediate Floor:
0.023W/m·K/0.013Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
EIFS
Image of detail
7.2.2
v1.7.3
Exposed Concrete Floor with Interior Insulated Concrete Mass Wall
Clear Wall:
0.420W/m²·K/0.074Btu/ft²·°F·hr
Interior to Exterior Wall:
0.666W/m·K/0.385Btu/ft·°F·hr
Intermediate Floor:
0.805W/m·K/0.465Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.3
v1.7.3
Interior Insulated Concrete Mass Wall with 1 5/8″ Steel Stud (16″ o.c.) Supporting Interior Finish – Insulated Interior Wall and Non-insulated Intermediate Floor Intersection
Interior to Exterior Wall:
0.454W/m·K/0.262Btu/ft·°F·hr
Intermediate Floor:
0.805W/m·K/0.465Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.4
v1.7.3
Interior Insulated Concrete Mass Wall with Insulation Outboard of Studs and Batt Insulation in Stud Cavity
Clear Wall:
0.230 to 0.290W/m²·K/0.041 to 0.051Btu/ft²·°F·hr
Interior to Exterior Wall:
0.622 to 0.710W/m·K/0.359 to 0.410Btu/ft·°F·hr
Intermediate Floor:
0.797 to 0.824W/m·K/0.461 to 0.476Btu/ft·°F·hr
8 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.5
v1.7.3
Exposed Concrete Floor with Interior Insulated Concrete Mass Wall
Intermediate Floor:
0.865W/m·K/0.500Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.2.6
v1.7.3
Under-insulated Intermediate Floor with Precast Concrete Panels and Interior Insulated Steel-Framed Wall
Clear Wall:
0.670W/m²·K/0.118Btu/ft²·°F·hr
Intermediate Floor:
0.495W/m·K/0.286Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.7
v1.7.3
Under-insulated Intermediate Concrete Floor with Precast Concrete Panels and Exterior Insulated Steel-Framed Wall
Clear Wall:
0.440W/m²·K/0.077Btu/ft²·°F·hr
Intermediate Floor:
0.377W/m·K/0.218Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.8
v1.7.3
Exterior Insulated Intermediate Concrete Floor with Precast Sandwich Panels with Steel Stud Assembly
Intermediate Floor:
0.205W/m·K/0.118Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.2.9
v1.7.3
Exterior Insulated Intermediate Composite Floor with Precast Sandwich Panels with Steel Connectors and Concrete at Perimeter Edges
Intermediate Floor:
1.277W/m·K/0.738Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.2.10
v1.7.3
Precast Sandwich Panel Wall Assembly with Steel Connectors at 16” o.c. – Intermediate Floor Intersection
Intermediate Floor:
0.067W/m·K/0.039Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.2.11
v1.7.3
Precast Sandwich Panel Wall Assembly with Steel Connectors at 36” o.c. – Intermediate Floor Intersection
Intermediate Floor:
0.107W/m·K/0.062Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.2.12
v1.7.3
Precast Sandwich Panel Wall Assembly with Steel Connectors at 48” o.c. – Intermediate Floor Intersection
Intermediate Floor:
0.074W/m·K/0.043Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.2.13
v1.7.3
Precast Sandwich Panel Wall Assembly with Fiber-Reinforced Composite Connectors at 16” o.c. – Intermediate Floor Intersection
Clear Wall:
0.500W/m²·K/0.088Btu/ft²·°F·hr
Intermediate Floor:
0.018W/m·K/0.010Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.14
v1.7.3
Shelf Angle with Metal Flashing at Concrete Floor with Exterior Insulated Concrete Block Wall with Masonry Ties Supporting Brick Veneer
Intermediate Floor:
0.408 to 0.467W/m·K/0.236 to 0.270Btu/ft·°F·hr
5 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.15
v1.7.3
Stand-off Shelf Angle with Metal Flashing at Concrete Floor with Exterior Insulated Concrete Block Wall with Masonry Ties Supporting Brick Veneer
Intermediate Floor:
0.289 to 0.322W/m·K/0.167 to 0.186Btu/ft·°F·hr
5 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.16
v1.7.3
Exposed Concrete Floor with Exterior Insulated Concrete Block Wall with Masonry Ties Supporting Brick Veneer
Intermediate Floor:
0.558 to 0.609W/m·K/0.322 to 0.352Btu/ft·°F·hr
5 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.17
v1.7.3
Balcony Slab Supported by Stand-off Shelf Angle at Concrete Floor with Exterior Insulated Concrete Block Wall with Masonry Ties Supporting Brick Veneer
Intermediate Floor:
0.205 to 0.243W/m·K/0.118 to 0.140Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.18
v1.7.3
Exposed Concrete Floor with Exterior Insulated Concrete Block Wall with Masonry Ties Supporting Brick Veneer
Intermediate Floor:
0.602 to 0.636W/m·K/0.348 to 0.367Btu/ft·°F·hr
5 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.19
v1.7.3
Thermally Broken Shelf Angle at Concrete Floor with Exterior Insulated Concrete Block Wall with Masonry Ties Supporting Brick Veneer.
Intermediate Floor:
0.141 to 0.186W/m·K/0.081 to 0.107Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Armatherm
Image of detail
7.2.20
v1.7.3
Interior Thermally Broken Intermediate Concrete Floor with Interior Insulated Concrete Mass
Intermediate Floor:
0.414W/m·K/0.239Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Schoeck
Image of detail
7.2.21
v1.7.3
Highly Insulated Precast Concrete Sandwich Panel Wall Assembly – Intermediate Floor Intersection with Inner Wythe Supported by Concrete Floor
Intermediate Floor:
0.006 to 0.017W/m·K/0.004 to 0.010Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.22
v1.7.3
Owens Corning Exterior Insulated Concrete Block Wall Assembly with Shelf Angle and Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer – Intermediate Floor Intersection
Intermediate Floor:
0.480 to 0.506W/m·K/0.277 to 0.292Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Heckmann
Owens Corning
Image of detail
7.2.23
v1.7.3
Owens Corning Exterior Insulated Concrete Block Wall Assembly with Stainless Steel Stand-off Shelf Angle and Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer – Intermediate Floor Intersection
Intermediate Floor:
0.093 to 0.112W/m·K/0.054 to 0.065Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Heckmann
Owens Corning
Image of detail
7.2.24
v1.7.3
Exterior Insulated Concrete Mass Wall with 1 5/8” x 1 5/8” Steel Stud (16” o.c.) and Thermally Isolated Vertical Brackets and Rail System (24” o.c.) Supporting Metal Cladding – Intermediate Floor Intersection
Intermediate Floor:
0.037 to 0.052W/m·K/0.021 to 0.030Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.2.25
v1.7.3
Insulated Precast Concrete Sandwich Panel Wall Assembly – Intermediate Floor Intersection with Inner Wythe Supported by Concrete Floor
Intermediate Floor:
0.011 to 0.082W/m·K/0.006 to 0.047Btu/ft·°F·hr
6 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.1
v1.7.3
Aluminum Window Transition with Concrete Wall and Drained EIFS at Intermediate Concrete Floor
Glazing Transition:
0.307W/m·K/0.177Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
EIFS
Image of detail
7.3.2
v1.7.3
Un-insulated Concrete Opening at Aluminum Window Perimeter.
Glazing Transition:
0.248 to 0.322W/m·K/0.143 to 0.186Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.3
v1.7.3
Un-insulated Concrete Opening at Aluminum Window Perimeter.
Glazing Transition:
0.248 to 0.325W/m·K/0.143 to 0.188Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.4
v1.7.3
Continious Concrete at Aluminum Window Perimeter
Glazing Transition:
1.366W/m·K/0.789Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.3.5
v1.7.3
Precast Sandwich Panel Wall Assembly with Steel Connectors at 24” (o.c.), and 3 5/8” Steel Stud (16” o.c.) – Window Intersection
Glazing Transition:
0.029 to 0.069W/m·K/0.017 to 0.040Btu/ft·°F·hr
6 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.6
v1.7.3
Aluminum Window Transition with Concrete Wall, Aerogel Insulation around the Window Perimeter, and Drained EIFS at Intermediate Concrete Floor
Glazing Transition:
0.184W/m·K/0.106Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Aerogel
EIFS
Image of detail
7.3.7
v1.7.3
Interior Insulated Concrete Block or Concrete Wall Assembly with Brick Cladding – Window Intersection
Glazing Transition:
0.543W/m·K/0.314Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.3.8
v1.7.3
Interior Insulated Concrete Block or Concrete Wall Assembly with Brick Cladding – Window Intersection Aligned with Insulation
Glazing Transition:
0.143W/m·K/0.083Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.3.9
v1.7.3
Concrete Opening at Aluminum Window Perimeter with Plywood Liner.
Glazing Transition:
0.124 to 0.226W/m·K/0.072 to 0.131Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.10
v1.7.3
Concrete Opening at Aluminum Window Perimeter with Insulation Wrapped into Opening.
Glazing Transition:
0.126 to 0.201W/m·K/0.073 to 0.116Btu/ft·°F·hr
8 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.11
v1.7.3
Un-insulated Concrete Opening at Aluminum Window Perimeter.
Glazing Transition:
0.056 to 0.107W/m·K/0.032 to 0.062Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.12
v1.7.3
Aluminum Window Transition with Window Thermal Break Positioned in Concrete of an Exterior Insulated Concrete Mass Wall with Thermally Isolated Vertical Brackets and Rail System Supporting Cladding at Intermediate Concrete Floor
Glazing Transition:
0.328 to 0.378W/m·K/0.190 to 0.218Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.13
v1.7.3
Aluminum Window Transition with Window Thermal Break Positioned in Exterior Insulation of an Exterior Insulated Concrete Mass Wall with Thermally Isolated Vertical Brackets and Rail System Supporting Cladding at Intermediate Concrete Floor
Glazing Transition:
0.026 to 0.081W/m·K/0.015 to 0.047Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.14
v1.7.3
Owens Corning Exterior Insulated Concrete Block Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer with Insulation Interrupted at Window Perimeter – Double Glazed Aluminum Window and Intermediate Floor Intersection
Glazing Transition:
0.257 to 0.746W/m·K/0.148 to 0.431Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Heckmann
Owens Corning
Image of detail
7.3.15
v1.7.3
Owens Corning Exterior Insulated Concrete Block Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer with Reduced Insulation at Jambs – Triple Glazed Aluminum High Performance Window and Intermediate Floor Intersection
Glazing Transition:
0.088 to 0.101W/m·K/0.051 to 0.058Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Heckmann
Owens Corning
Image of detail
7.3.16
v1.7.3
Interior Insulated Multi-Wythe Brick Masonry Wall with 1 5/8” x 1 5/8” Steel Studs (16” o.c.) Supporting Interior Finish – Wood Window Intersection with Un-Insulated Window Perimeter
Glazing Transition:
0.297 to 0.506W/m·K/0.172 to 0.292Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.17
v1.7.3
Interior Insulated Multi-Wythe Brick Masonry Wall with 1 5/8” x 1 5/8” Steel Studs (16” o.c.) Supporting Interior Finish – Aluminum Window Intersection with Un-Insulated Window Perimeter
Glazing Transition:
0.552 to 0.704W/m·K/0.319 to 0.407Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.18
v1.7.3
Interior Insulated Multi-Wythe Brick Masonry Wall with 1 5/8” x 1 5/8” Steel Studs (16” o.c.) Supporting Interior Finish – Aluminum Window Intersection with Insulation at Window Perimeter
Glazing Transition:
0.352 to 0.389W/m·K/0.203 to 0.225Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.19
v1.7.3
Interior Insulated Multi-Wythe Brick Masonry Wall with 1 5/8” x 1 5/8” Steel Studs (16” o.c.) Supporting Interior Finish – Aluminum Window Intersection with Aerogel Blanket at Window Perimeter
Glazing Transition:
0.432W/m·K/0.250Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.3.20
v1.7.3
Precast Sandwich Panel Wall Assembly with PVC at Panel Perimeter, Steel Connectors at 24” (o.c.), and 3 5/8” Steel Stud (16” o.c.) – Window Intersection
Glazing Transition:
0.051 to 0.081W/m·K/0.030 to 0.047Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.21
v1.7.3
Precast Sandwich Panel Wall Assembly with Wood at Panel Perimeter, Steel Connectors at 24” (o.c.), and 3 5/8” Steel Stud (16” o.c.) – Window Intersection
Glazing Transition:
0.069 to 0.105W/m·K/0.040 to 0.061Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.22
v1.7.3
Precast Sandwich Panel Wall Assembly with Gypsum Board at Panel Perimeter, Steel Connectors at 24” (o.c.), and 3 5/8” Steel Stud (16” o.c.) – Window Intersection
Glazing Transition:
0.072 to 0.117W/m·K/0.042 to 0.068Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.3.23
v1.7.3
Precast Sandwich Panel Wall Assembly, Steel Connectors at 24” (o.c.), and 3 5/8” Steel Stud (16” o.c.) – Window Intersection
Glazing Transition:
0.076 to 0.113W/m·K/0.044 to 0.065Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.4.1
v1.7.3
Curtain-Wall Transition with Thermal Break aligned with Exterior Insulation
Glazing Transition:
0.103W/m·K/0.060Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
EIFS
Image of detail
7.4.2
v1.7.3
Curtain-Wall Transition with Thermal Break aligned with Insulation in Sandwich Panel
Assembly Joint:
0.142W/m·K/0.082Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry, Curtain-Wall
Image of detail
7.4.3
v1.7.3
Curtain-Wall Transition with Interior Insulated Concrete Wall
Glazing Transition:
0.295W/m·K/0.170Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.4.4
v1.7.3
Curtain-Wall Transition with Interior Insulated Concrete Wall and Insulation in Curtain-Wall Jamb
Glazing Transition:
0.086W/m·K/0.050Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.4.5
v1.7.3
Precast Sandwich Panel Wall Assembly, TigerLoc Thermal Break Curtain Wall Transition
Glazing Transition:
0.071 to 0.077W/m·K/0.041 to 0.044Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Tigerloc
Image of detail
7.4.6
v1.7.3
Highly Insulated Precast Concrete Sandwich Panel Wall Assembly – High Performance Aluminum Window Sill Detail
Glazing Transition:
0.015 to 0.023W/m·K/0.009 to 0.013Btu/ft·°F·hr
5 detail scenarios
Concrete and Mass Masonry
Image of detail
7.4.7
v1.7.3
Highly Insulated Precast Concrete Sandwich Panel Wall Assembly – High Performance Aluminum Window Head Detail
Glazing Transition:
0.006 to 0.008W/m·K/0.003 to 0.005Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.5.1
v1.7.3
Partially Insulated Concrete Parapet with an EIFS Concrete Wall
Roof-to-Wall Transition:
0.436W/m·K/0.252Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
EIFS
Image of detail
7.5.2
v1.7.3
Exterior Insulated Concrete Parapet with Concrete Wall and Drained EIFS
Roof-to-Wall Transition:
0.253W/m·K/0.146Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
EIFS
Image of detail
7.5.3
v1.7.3
Exposed Concrete Parapet with Interior Insulated Concrete Mass Wall with Concrete Roof Deck
Roof-to-Wall Transition:
0.777W/m·K/0.449Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.5.4
v1.7.3
Exposed Steel-Framed Parapet with Pre-Cast Sandwich Panels and Steel Roof Deck with Open Web Steel Joist
Roof-to-Wall Transition:
0.650W/m·K/0.376Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry, Steel-Framed
Image of detail
7.5.5
v1.7.3
Exposed Steel-Framed Parapet with Pre-Cast Sandwich Panels with Concrete Edges and Steel Roof Deck
Roof-to-Wall Transition:
0.836W/m·K/0.483Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry, Steel-Framed
Image of detail
7.5.6
v1.7.3
Exposed Steel-Framed Parapet with Pre-Cast Concrete Wall with Steel Stud and Rigid Insulated Outboard of Studs and Concrete Roof Deck
Roof-to-Wall Transition:
0.579W/m·K/0.335Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry, Steel-Framed
Image of detail
7.5.7
v1.7.3
Exposed Steel-Framed Parapet with Pre-Cast Concrete Wall with Steel Stud and Rigid Insulated Outboard of Studs and Concrete Roof Deck with Thermal break under Parapet Cavity.
Roof-to-Wall Transition:
0.216 to 0.393W/m·K/0.125 to 0.227Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Armatherm
Image of detail
7.5.8
v1.7.3
Exposed Concrete Block Parapet with Exterior Insulated Concrete Block with Brick Veneer and Concrete Roof Deck
Roof-to-Wall Transition:
0.311 to 0.412W/m·K/0.180 to 0.238Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.5.9
v1.7.3
Thermally Broken Concrete Parapet at Roof Deck with Precast Sandwich Panel at Steel Roof Deck with Open Web Steel Joist
Roof-to-Wall Transition:
0.319W/m·K/0.184Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry, Steel-Framed
Tigerloc
Image of detail
7.5.10
v1.7.3
Highly Insulated Precast Concrete Sandwich Panel Wall Assembly – Roof to Wall Intersection with Wood-Framed Parapet
Roof-to-Wall Transition:
-0.012 to 0.006W/m·K/-0.007 to 0.003Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.5.11
v1.7.3
Owens Corning Exterior Insulated Concrete Block Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer – Roof to Wall Intersection with Uninsulated Parapet
Roof-to-Wall Transition:
0.502 to 0.505W/m·K/0.290 to 0.292Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Heckmann
Owens Corning
Image of detail
7.5.12
v1.7.3
Owens Corning Exterior Insulated Concrete Block Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer – Roof to Wall Intersection with Insulation Wrapped Around Parapet
Roof-to-Wall Transition:
0.209 to 0.260W/m·K/0.121 to 0.150Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Heckmann
Owens Corning
Image of detail
7.5.13
v1.7.3
Window Wall System – Double Glazed Insulated Frame at Concrete Precast Panel Parapet & Roof Intersection
Roof-to-Wall Transition:
0.572 to 0.613W/m·K/0.331 to 0.354Btu/ft·°F·hr
6 detail scenarios
Concrete and Mass Masonry
Image of detail
7.5.14
v1.7.3
Window Wall System – Double Glazed Insulated Frame at Isokorb AXTI Thermally Broken Concrete Parapet & Roof Intersection
Roof-to-Wall Transition:
0.267 to 0.305W/m·K/0.154 to 0.176Btu/ft·°F·hr
6 detail scenarios
Concrete and Mass Masonry
Image of detail
7.5.15
v1.7.3
Window Wall System – Triple Glazed Insulated Frame at Concrete Precast Panel Parapet & Roof Intersection
Roof-to-Wall Transition:
0.585 to 0.647W/m·K/0.338 to 0.374Btu/ft·°F·hr
6 detail scenarios
Concrete and Mass Masonry
Image of detail
7.5.16
v1.7.3
Window Wall System – Triple Glazed Insulated Frame at Isokorb AXTI Thermally Broken Concrete Parapet & Roof Intersection
Roof-to-Wall Transition:
0.204 to 0.239W/m·K/0.118 to 0.138Btu/ft·°F·hr
6 detail scenarios
Concrete and Mass Masonry
Image of detail
7.6.1
v1.7.3
Exterior Insulated Outside Corner Transition with Concrete Wall and Drained EIFS
Corner:
0.147W/m·K/0.085Btu/ft·°F·hr
1 detail scenario
Concrete and Mass Masonry
EIFS
Image of detail
7.6.2
v1.7.3
Highly Insulated Precast Concrete Sandwich Panel Wall Assembly – Outside Corner
Corner:
-0.047 to -0.032W/m·K/-0.027 to -0.018Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.7.1
v1.7.3
Exposed Interior Concrete Mass Wall Intersection with Non-Insulated Partition Wall Intersection and Unheated Intermediate Concrete Floor (Parking Garage). Interior Wall at Intermediate Concrete Floor.
Interior to Exterior Wall:
0.622 to 0.799W/m·K/0.359 to 0.462Btu/ft·°F·hr
Intermediate Floor:
0.674 to 0.702W/m·K/0.389 to 0.406Btu/ft·°F·hr
8 detail scenarios
Concrete and Mass Masonry
Image of detail
7.7.2
v1.7.3
Concrete Column Connection without Insulated Intermediate Concrete Floor and Insulation Down Column
Point Penetration:
0.330 to 0.740W/K/0.6 to 1.4Btu/°F·hr
2 detail scenarios
Concrete and Mass Masonry
Image of detail
7.7.3
v1.7.3
Insulated Slab-on-Grade Transition with Pre-Cast Sandwich Panel with Discontinuous Insulation at Footing
Foundation/Grade:
0.781 to 0.820W/m·K/0.451 to 0.474Btu/ft·°F·hr
4 detail scenarios
Concrete and Mass Masonry
Image of detail
7.7.4
v1.7.3
Insulated Footing Transition with Pre-Cast Sandwich Panel with Insulation Aligned with Footing Insulation
Foundation/Grade:
0.303 to 0.330W/m·K/0.175 to 0.191Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.7.5
v1.7.3
Insulated Footing Transition with Pre-Cast Sandwich Panel with Horizontal Footing Insulation and Thermally Broken Concrete Slab. 2" Armatherm Block under Precast Wall and Anchors Only, 1" Fiberboard Joint
Foundation/Grade:
0.315 to 0.781W/m·K/0.182 to 0.451Btu/ft·°F·hr
8 detail scenarios
Concrete and Mass Masonry
Armatherm
Image of detail
7.7.6
v1.7.3
Insulated Slab on Grade - Steel Column
Point Penetration:
0.864W/K/1.6Btu/°F·hr
1 detail scenario
Concrete and Mass Masonry
Image of detail
7.7.7
v1.7.3
Insulated Slab on Grade - Armatherm 500 Thermal Break under Column
Point Penetration:
0.079W/K/0.1Btu/°F·hr
1 detail scenario
Concrete and Mass Masonry
Armatherm
Image of detail
7.7.8
v1.7.3
Highly Insulated Precast Concrete Sandwich Panel Wall Assembly – Base of Wall at Foundation with Insulation Skirt
Foundation/Grade:
0.005 to 0.007W/m·K/0.003Btu/ft·°F·hr
3 detail scenarios
Concrete and Mass Masonry
Image of detail
7.7.9
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Steel Shelf Angle and Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer and Insulation Below Floor – Slab on Grade and Foundation Intersection
Foundation/Grade:
0.521 to 0.557W/m·K/0.301 to 0.322Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Heckmann
Owens Corning
Image of detail
7.7.10
v1.7.3
Exterior Insulated Concrete Block Wall Assembly with Stainless Steel Shelf Angle and Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer and Insulation Below Floor – Slab on Grade and Foundation Intersection
Foundation/Grade:
0.399 to 0.418W/m·K/0.231 to 0.242Btu/ft·°F·hr
2 detail scenarios
Concrete and Mass Masonry
Heckmann
Owens Corning
Image of detail
7.8.1
v1.7.3
Precast Sandwich Panel with EmLoc Thermally Broken Embedment
Point Penetration:
0.028 to 0.050W/K/0.1 to 0.1Btu/°F·hr
3 detail scenarios
Concrete and Mass Masonry
EmLoc
Image of detail
8.1.1
v1.7.3
Interior Insulated 2x4 Wood Stud Wall Assembly – Clear Wall
Clear Wall:
0.390 to 1.560W/m²·K/0.069 to 0.275Btu/ft²·°F·hr
6 detail scenarios
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x4 Wood-framed
Uninsulated
Image of detail
8.1.2
v1.7.3
Interior Insulated 2x6 Wood Stud Wall Assembly – Clear Wall
Clear Wall:
0.200 to 1.560W/m²·K/0.035 to 0.275Btu/ft²·°F·hr
14 detail scenarios
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x6 Wood-framed
Uninsulated
Image of detail
8.1.3
v1.7.3
Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.290W/m²·K/0.051Btu/ft²·°F·hr
1 detail scenario
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.4
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.147 to 0.238W/m²·K/0.026 to 0.042Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.5
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Continuous Rigid Insulation Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.136 to 0.231W/m²·K/0.024 to 0.041Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.6
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Horizontal Metal Z-Girts (24” o.c.) Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.174 to 0.242W/m²·K/0.031 to 0.043Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.7
v1.7.3
Exterior Insulated Wood-Framed Assembly with Thermally Isolated Steel Clip and Rail System supporting Cladding
Clear Wall:
0.240 to 0.510W/m²·K/0.042 to 0.090Btu/ft²·°F·hr
6 detail scenarios
Wood-Framed and Timber
Knight Wall
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
Uninsulated
Image of detail
8.1.8
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Knight MFI-System (24” o.c.) Supporting Cladding and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.140 to 0.220W/m²·K/0.025 to 0.039Btu/ft²·°F·hr
6 detail scenarios
Wood-Framed and Timber
Knight Wall
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.9
v1.7.3
Exterior Insulated Wood-Framed Assembly with Thermally Isolated Aluminum Clip and Rail System supporting Cladding (with Fiberglass Batt Insulation in Stud Cavity)
Clear Wall:
0.180 to 0.370W/m²·K/0.032 to 0.065Btu/ft²·°F·hr
2 detail scenarios
Wood-Framed and Timber
Longboard
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
Uninsulated
Image of detail
8.1.10
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap – Clear Wall
Clear Wall:
0.096 to 0.149W/m²·K/0.017 to 0.026Btu/ft²·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.11
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 3” Gap – Clear Wall
Clear Wall:
0.087 to 0.137W/m²·K/0.015 to 0.024Btu/ft²·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.12
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 4” Gap – Clear Wall
Clear Wall:
0.080 to 0.126W/m²·K/0.014 to 0.022Btu/ft²·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.13
v1.7.3
Interior Insulated Cross Laminated Timber (CLT) Spandrel with ISO-CONNECT Anchor – Anchor Point Transmittance
Clear Wall:
0.307 to 0.436W/m²·K/0.054 to 0.077Btu/ft²·°F·hr
Point Penetration:
0.016 to 0.022W/K/0.0 to 0.0Btu/°F·hr
8 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.14
v1.7.3
Exterior and Interior Insulated 2”x6” Wood Stud (16” o.c. and 24” o.c.) Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer and Owens Corning R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.150 to 0.190W/m²·K/0.026 to 0.033Btu/ft²·°F·hr
6 detail scenarios
Wood-Framed and Timber
Heckmann
Owens Corning
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.15
v1.7.3
Exterior and Interior Insulated 2”x6” Wood Stud (16” o.c. and 24” o.c.) Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer and Owens Corning R-22 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.140 to 0.180W/m²·K/0.025 to 0.032Btu/ft²·°F·hr
6 detail scenarios
Wood-Framed and Timber
Heckmann
Owens Corning
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x6 Wood-framed
R-22
Image of detail
8.1.16
v1.7.3
Exterior and Interior Insulated 2”x6” Wood Stud (16” o.c. and 24” o.c.) Wall Assembly with Heckmann Pos-I-Tie Veneer Anchoring System Supporting Brick Veneer and Owens Corning R-24 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.130 to 0.170W/m²·K/0.023 to 0.030Btu/ft²·°F·hr
6 detail scenarios
Wood-Framed and Timber
Heckmann
Owens Corning
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x6 Wood-framed
R-24
Image of detail
8.1.17
v1.7.3
Exterior Insulated Cross Laminated Timber (CLT) Wall Assembly with Wood Strapping and Continuous Rigid Insulation Supporting Fiber Cement Board
Clear Wall:
0.167 to 0.570W/m²·K/0.029 to 0.100Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.18
v1.7.3
Exterior Insulated Cross Laminated Timber (CLT) Wall Assembly with Wood Strapping and Continuous Rigid Insulation Supporting Fiber Cement Board
Clear Wall:
0.180 to 0.230W/m²·K/0.032 to 0.041Btu/ft²·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.19
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Brick Ties Supporting Brick Veneer and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.180 to 0.290W/m²·K/0.032 to 0.051Btu/ft²·°F·hr
4 detail scenarios
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.20
v1.7.3
Exterior Insulated 2x6 Wood Stud (16” o.c.) Wall with Interior OSB and Wood Furring Assembly & Brick Ties Supporting Brick Veneer – Clear Wall
Clear Wall:
0.211 to 0.397W/m²·K/0.037 to 0.070Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.21
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall with Interior OSB and Wood Furring Assembly & Brick Ties Supporting Brick Veneer – Clear Wall
Clear Wall:
0.131 to 0.217W/m²·K/0.023 to 0.038Btu/ft²·°F·hr
6 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.22
v1.7.3
Exterior Insulated 2x6 Wood Stud (16” o.c.) Wall with Interior Wood Furring Assembly & Brick Ties Supporting Brick Veneer – Clear Wall
Clear Wall:
0.222 to 0.436W/m²·K/0.039 to 0.077Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
Uninsulated
Image of detail
8.1.23
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall with Interior Wood Furring Assembly & Brick Ties Supporting Brick Veneer – Clear Wall
Clear Wall:
0.132 to 0.220W/m²·K/0.023 to 0.039Btu/ft²·°F·hr
6 detail scenarios
Wood-Framed and Timber
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.24
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 1” Gap – Clear Wall
Clear Wall:
0.108 to 0.165W/m²·K/0.019 to 0.029Btu/ft²·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.25
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-XPS 20 and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.108 to 0.232W/m²·K/0.019 to 0.041Btu/ft²·°F·hr
23 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.26
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-XPS 20 and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.105 to 0.232W/m²·K/0.019 to 0.041Btu/ft²·°F·hr
25 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.27
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-SPF 202 and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.095 to 0.222W/m²·K/0.017 to 0.039Btu/ft²·°F·hr
21 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.28
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-SPF 202 and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.092 to 0.216W/m²·K/0.016 to 0.038Btu/ft²·°F·hr
21 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.29
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.096 to 0.223W/m²·K/0.017 to 0.039Btu/ft²·°F·hr
39 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.30
v1.7.3
Exterior and Inteiror Insulated 2x6 Wood Stud (24” o.c.) Wall Assembly with SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.094 to 0.217W/m²·K/0.017 to 0.038Btu/ft²·°F·hr
39 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.31
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Mineral Wool and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.109 to 0.239W/m²·K/0.019 to 0.042Btu/ft²·°F·hr
24 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.32
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (24” o.c.) Wall Assembly with Mineral Wool and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.106 to 0.232W/m²·K/0.019 to 0.041Btu/ft²·°F·hr
24 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.33
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Protected SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.102 to 0.170W/m²·K/0.018 to 0.030Btu/ft²·°F·hr
27 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.34
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (24” o.c.) Wall Assembly with Protected SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-19 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.099 to 0.166W/m²·K/0.017 to 0.029Btu/ft²·°F·hr
27 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.35
v1.7.3
Exterior and Interior Insulated 2x4 Wood Stud (16” o.c.) Wall Assembly with Protected SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-13 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.112 to 0.202W/m²·K/0.020 to 0.036Btu/ft²·°F·hr
27 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
16" o.c.
2x4 Wood-framed
R-13
Image of detail
8.1.36
v1.7.3
Exterior and Interior Insulated 2x4 Wood Stud (24” o.c.) Wall Assembly with Protected SOPREMA SOPRA-ISO V PLUS and ACS-S Thermal Clip Supporting Metal Cladding with R-13 Cellulose Insulation in Stud Cavity - Clear Wall
Clear Wall:
0.110 to 0.199W/m²·K/0.019 to 0.035Btu/ft²·°F·hr
27 detail scenarios
Wood-Framed and Timber
ACS Composite Systems
SOPREMA
1/2" Drywall
1/2" Sheathing
24" o.c.
2x4 Wood-framed
R-13
Image of detail
8.1.37
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (8” o.c.) Wall Assembly with Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.170 to 0.310W/m²·K/0.030 to 0.055Btu/ft²·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.1.38
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Thermally Broken 2" ISO Clip System Supporting Horizontal Sub-girts and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.170 to 0.210W/m²·K/0.030 to 0.037Btu/ft²·°F·hr
48 detail scenarios
Wood-Framed and Timber
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.39
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Thermally Broken 2" ISO Clip System Supporting Vertical Sub-girts and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.180 to 0.210W/m²·K/0.032 to 0.037Btu/ft²·°F·hr
16 detail scenarios
Wood-Framed and Timber
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.40
v1.7.3
Exterior and Interior Insulated 2x4 Wood Stud (16” o.c.) Wall Assembly with Thermally Broken 2" ISO Clip System Supporting Horizontal Sub-girts and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.200 to 0.270W/m²·K/0.035 to 0.048Btu/ft²·°F·hr
48 detail scenarios
Wood-Framed and Timber
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x4 Wood-framed
R-12
Image of detail
8.1.41
v1.7.3
Exterior and Interior Insulated 2x4 Wood Stud (16” o.c.) Wall Assembly with Thermally Broken 2" ISO Clip System Supporting Vertical Sub-girts and R-12 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.220 to 0.280W/m²·K/0.039 to 0.049Btu/ft²·°F·hr
16 detail scenarios
Wood-Framed and Timber
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
2x4 Wood-framed
R-12
Image of detail
8.1.42
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Thermally Broken 4.75" ISO Clip System Supporting Horizontal L-girts and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.110 to 0.160W/m²·K/0.019 to 0.028Btu/ft²·°F·hr
48 detail scenarios
Wood-Framed and Timber
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.43
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Thermally Broken 4.75" ISO Clip System Supporting Vertical L-girts and R-19 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.100 to 0.160W/m²·K/0.018 to 0.028Btu/ft²·°F·hr
32 detail scenarios
Wood-Framed and Timber
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x6 Wood-framed
R-19
Image of detail
8.1.44
v1.7.3
Exterior and Interior Insulated 2x4 Wood Stud (16” o.c.) Wall Assembly with Thermally Broken 4.75" ISO Clip System Supporting Horizontal L-girts and R-13 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.130 to 0.180W/m²·K/0.023 to 0.032Btu/ft²·°F·hr
48 detail scenarios
Wood-Framed and Timber
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x4 Wood-framed
R-13
Image of detail
8.1.45
v1.7.3
Exterior and Interior Insulated 2x4 Wood Stud (16” o.c.) Wall Assembly with Thermally Broken 4.75" ISO Clip System Supporting Vertical L-girts and R-13 Batt Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.130 to 0.190W/m²·K/0.023 to 0.033Btu/ft²·°F·hr
48 detail scenarios
Wood-Framed and Timber
ISO Clip
1/2" Drywall
1/2" Sheathing
16" o.c.
24" o.c.
2x4 Wood-framed
R-13
Image of detail
8.1.46
v1.7.3
Exterior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with ROCKWOOL Comfortboard® 80 Exterior Stone Wool Insulation – Clear Wall
Clear Wall:
0.250 to 0.720W/m²·K/0.044 to 0.127Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
Uninsulated
Image of detail
8.1.47
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with ROCKWOOL Comfortboard® 80 Exterior Stone Wool Insulation and R-22 ROCKWOOL Comfortbatt® Interior Stone Wool Insulation – Clear Wall
Clear Wall:
0.140 to 0.220W/m²·K/0.025 to 0.039Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-22
Image of detail
8.1.48
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Horizontal Metal Z-Girts (24” o.c.) Supporting ROCKWOOL Cavityrock® Exterior Stone Wool Insulation with R-22 ROCKWOOL Comfortbatt® Interior Stone Wool Insulation – Clear Wall
Clear Wall:
0.170 to 0.230W/m²·K/0.030 to 0.041Btu/ft²·°F·hr
5 detail scenarios
Wood-Framed and Timber
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-22
Image of detail
8.1.49
v1.7.3
Exterior and Interior Insulated 2”x6” Wood Stud (16” o.c.) Wall Assembly with Steel Brick Anchors Supporting Brick Veneer and ROCKWOOL Cavityrock® Stone Wool Insulation with R-22 ROCKWOOL Comfortbatt® Stone Wool Insulation in Stud Cavity – Clear Wall
Clear Wall:
0.150 to 0.190W/m²·K/0.026 to 0.033Btu/ft²·°F·hr
3 detail scenarios
Wood-Framed and Timber
ROCKWOOL
1/2" Drywall
1/2" Sheathing
16" o.c.
2x6 Wood-framed
R-22
Image of detail
8.2.1
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity - Rim Joist and Floor Intersection with Metal Flashing Bypassing Exterior Insulation
Intermediate Floor:
0.077 to 0.122W/m·K/0.044 to 0.070Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.2
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity - Rim Joist and Floor Intersection without Metal Flashing Bypassing Exterior Insulation
Intermediate Floor:
0.054 to 0.076W/m·K/0.031 to 0.044Btu/ft·°F·hr
5 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.3
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Cantilevered Wood Joist Balcony Intersection
Intermediate Floor:
0.115 to 0.125W/m·K/0.066 to 0.072Btu/ft·°F·hr
2 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.4
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Independently Supported Balcony Intersection
Intermediate Floor:
0.134 to 0.143W/m·K/0.077 to 0.083Btu/ft·°F·hr
2 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.5
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Cantilevered Floor Intersection
Intermediate Floor:
0.036 to 0.059W/m·K/0.021 to 0.034Btu/ft·°F·hr
2 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.6
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap – Rim Joist and Floor Intersection
Intermediate Floor:
0.018 to 0.025W/m·K/0.010 to 0.014Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.7
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 3” Gap – Rim Joist and Floor Intersection
Intermediate Floor:
0.016 to 0.021W/m·K/0.009 to 0.012Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.8
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 4” Gap – Rim Joist and Floor Intersection
Intermediate Floor:
0.014 to 0.019W/m·K/0.008 to 0.011Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.9
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap – Insulated Rim Joist and Floor Intersection
Intermediate Floor:
0.016 to 0.025W/m·K/0.009 to 0.014Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.10
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 3” Gap – Insulated Rim Joist and Floor Intersection
Intermediate Floor:
0.014 to 0.021W/m·K/0.008 to 0.012Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.11
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 4” Gap – Insulated Rim Joist and Floor Intersection
Intermediate Floor:
0.013 to 0.019W/m·K/0.007 to 0.011Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.12
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Shelf Angle & Brick Ties Supporting Brick Veneer and R-19 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.058 to 0.083W/m·K/0.034 to 0.048Btu/ft·°F·hr
2 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.13
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Stand-off (Knife Plate) Shelf Angle & Brick Ties Supporting Brick Veneer and R-19 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.056 to 0.074W/m·K/0.032 to 0.043Btu/ft·°F·hr
2 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.14
v1.7.3
Exterior Insulated 2x6 Wood Stud (16” o.c.) Wall with Interior OSB and Wood Furring Assembly with Stand-off (Knife Plate) Shelf Angle & Brick Ties Supporting Brick Veneer – CLT and Wood Truss Floor Intersection
Intermediate Floor:
0.032 to 0.076W/m·K/0.019 to 0.044Btu/ft·°F·hr
5 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.15
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall with Interior OSB and Wood Furring Assembly with Stand-off (Knife Plate) Shelf Angle & Brick Ties Supporting Brick Veneer – CLT and Wood Truss Floor Intersection
Intermediate Floor:
0.054 to 0.061W/m·K/0.031 to 0.035Btu/ft·°F·hr
6 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.16
v1.7.3
Exterior Insulated 2x6 Wood Stud (16” o.c.) Wall with Interior Wood Furring Assembly with Stand-off (Knife Plate) Shelf Angle & Brick Ties Supporting Brick Veneer – CLT and Wood Truss Floor Intersection
Intermediate Floor:
0.021 to 0.073W/m·K/0.012 to 0.042Btu/ft·°F·hr
5 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.17
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall with Interior Wood Furring Assembly with Stand-off (Knife Plate) Shelf Angle & Brick Ties Supporting Brick Veneer – CLT and Wood Truss Floor Intersection
Intermediate Floor:
0.050 to 0.058W/m·K/0.029 to 0.033Btu/ft·°F·hr
6 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.18
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (8” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.008 to 0.032W/m·K/0.005 to 0.018Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.2.19
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Intermediate Floor Intersection
Intermediate Floor:
0.012 to 0.034W/m·K/0.007 to 0.020Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.1
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Vinyl Window Intersection
Glazing Transition:
0.055 to 0.061W/m·K/0.032 to 0.035Btu/ft·°F·hr
2 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.2
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Aluminum Window Intersection
Glazing Transition:
0.001 to 0.040W/m·K/0.001 to 0.023Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.3
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (8” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Vinyl Window Intersection
Glazing Transition:
0.085 to 0.092W/m·K/0.049 to 0.053Btu/ft·°F·hr
2 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.4
v1.7.3
Vinyl Window Transition with Window Positioned in Wood Framing of an Exterior Insulated Wood Framed Wall with Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board
Glazing Transition:
0.000 to 0.056W/m·K/0.000 to 0.032Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.5
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Triple Glazed Flange Mounted Vinyl Window Intersection with Window Positioned in Wood Framing
Glazing Transition:
0.031 to 0.038W/m·K/0.018 to 0.022Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.6
v1.7.3
High Performance Vinyl Window Transition with Window Positioned in Wood Framing of an Exterior Insulated Wood Framed Wall with Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board
Glazing Transition:
-0.033 to 0.024W/m·K/-0.019 to 0.014Btu/ft·°F·hr
6 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.7
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping (16” o.c.) and Continuous Insulation Supporting Rainscreen Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Triple Glazed High Performance Vinyl Window Intersection (Insulated Frames)
Glazing Transition:
0.019 to 0.028W/m·K/0.011 to 0.016Btu/ft·°F·hr
6 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.8
v1.7.3
Interior Insulated Cross Laminated Timber (CLT) Spandrel at Window and Dowel Laminated Timber (DLT) – Intermediate Floor Intersection with Edge of Floor and Glulam Beam Aligned
Glazing Transition:
0.010 to 0.027W/m·K/0.006 to 0.016Btu/ft·°F·hr
7 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.9
v1.7.3
Full Height Interior Insulated Cross Laminated Timber (CLT) Spandrel at Window and Dowel Laminated Timber (DLT) – Intermediate Floor Intersection with Edge of Floor and Glulam Beam Aligned
Glazing Transition:
0.010 to 0.014W/m·K/0.006 to 0.008Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.10
v1.7.3
Interior Insulated Cross Laminated Timber (CLT) Spandrel at Window and Dowel Laminated Timber (DLT) – Intermediate Floor Intersection with Edge of Floor and Glulam Beam Not Aligned
Glazing Transition:
0.024 to 0.026W/m·K/0.014 to 0.015Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.11
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) and 2” Gap – Triple Glazed Flanged Fiberglass Window Intersection with Wood Blocking and Un-insulated Perimeter
Glazing Transition:
0.072 to 0.077W/m·K/0.041 to 0.044Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.12
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) and 3” Gap – Triple Glazed Flanged Fiberglass Window Intersection with Wood Blocking and Un-insulated Perimeter
Glazing Transition:
0.074 to 0.078W/m·K/0.043 to 0.045Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.13
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) and 4” Gap – Triple Glazed Flanged Fiberglass Window Intersection with Wood Blocking and Un-insulated Perimeter
Glazing Transition:
0.076 to 0.079W/m·K/0.044 to 0.046Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.14
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) and 2” Gap – Triple Glazed Flanged Fiberglass Window Intersection with Wood Blocking and Insulated Perimeter
Glazing Transition:
0.062 to 0.067W/m·K/0.036 to 0.039Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.15
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) and 3” Gap – Triple Glazed Flanged Fiberglass Window Intersection with Wood Blocking and Insulated Perimeter
Glazing Transition:
0.062 to 0.066W/m·K/0.036 to 0.038Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.16
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) and 4” Gap – Triple Glazed Flanged Fiberglass Window Intersection with Wood Blocking and Insulated Perimeter
Glazing Transition:
0.062 to 0.066W/m·K/0.036 to 0.038Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.17
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) Wall and 2” Gap – Triple Glazed Rebated Fiberglass Window Intersection and Un-Insulated Perimeter
Glazing Transition:
0.083 to 0.084W/m·K/0.048Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.18
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) Wall and 3” Gap – Triple Glazed Rebated Fiberglass Window Intersection and Un-insulated Perimeter
Glazing Transition:
0.085 to 0.086W/m·K/0.049Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.19
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) Wall and 4” Gap – Triple Glazed Rebated Fiberglass Window Intersection and Un-insulated Perimeter
Glazing Transition:
0.087W/m·K/0.050Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.20
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) Wall and 2” Gap – Triple Glazed Rebated Fiberglass Window Intersection with Insulation at Window Perimeter
Glazing Transition:
0.044 to 0.045W/m·K/0.025Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.21
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) Wall and 3” Gap – Triple Glazed Rebated Fiberglass Window Intersection with Insulation at Window Perimeter
Glazing Transition:
0.044W/m·K/0.025Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.22
v1.7.3
Double Framed Wall with 2x6 and 2x4 Wood Studs (16” o.c.) Wall and 4” Gap – Triple Glazed Rebated Fiberglass Window Intersection with Insulation at Window Perimeter
Glazing Transition:
0.044W/m·K/0.025Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.3.23
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16" o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board - Double Glazed Aluminum Window Intersection Aligned with Exterior Insulation
Glazing Transition:
0.116W/m·K/0.067Btu/ft·°F·hr
2 detail scenarios
Wood-Framed and Timber
Image of detail
8.4.1
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Rainscreen Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Vented Low-slope Roof & Parapet Intersection
Roof-to-Wall Transition:
0.045 to 0.056W/m·K/0.026 to 0.032Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.4.2
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Sloped Wood Framed Roof & Wall Intersection with Insulation at Ceiling
Roof:
0.190W/m²·K/0.033Btu/ft²·°F·hr
Roof-to-Wall Transition:
0.060 to 0.081W/m·K/0.035 to 0.047Btu/ft·°F·hr
6 detail scenarios
Wood-Framed and Timber
Image of detail
8.4.3
v1.7.3
Wood-Framed Roof Intersection with Wood-frame wall with Insulation at Roof Sheathing
Roof:
0.230W/m²·K/0.041Btu/ft²·°F·hr
Roof-to-Wall Transition:
0.079 to 0.102W/m·K/0.046 to 0.059Btu/ft·°F·hr
6 detail scenarios
Wood-Framed and Timber
Image of detail
8.4.4
v1.7.3
Wood-Framed Roof Intersection with Masonry Firewall
Roof-to-Wall Transition:
0.099W/m·K/0.057Btu/ft·°F·hr
1 detail scenario
Wood-Framed and Timber
Image of detail
8.4.5
v1.7.3
Exterior Insulated Cross Laminated Timber (CLT) Wall Assembly with Continuous Rigid Insulation Supporting Fiber Cement Board –Low-Slope Roof & Parapet Intersection
Roof-to-Wall Transition:
0.045 to 0.053W/m·K/0.026 to 0.030Btu/ft·°F·hr
12 detail scenarios
Wood-Framed and Timber
Image of detail
8.5.1
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping Supporting and Continuous Insulation Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Corner Intersection
Corner:
0.034 to 0.036W/m·K/0.020 to 0.021Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.5.2
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 1” Gap – Corner Intersection
Corner:
0.027 to 0.034W/m·K/0.016 to 0.020Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.1
v1.7.3
Wood-Frame Door Sill on Concrete Deck Over Unheated Space (Parking Garage)
Foundation/Grade:
0.554W/m·K/0.320Btu/ft·°F·hr
1 detail scenario
Wood-Framed and Timber
Image of detail
8.6.2
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Continuous Insulation and Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Rim Joist and Interior Insulated At-Grade Foundation Wall Intersection
Foundation/Grade:
0.080 to 0.087W/m·K/0.046 to 0.050Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.3
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Continuous Insulation and Wood Strapping Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Rim Joist and Exterior Insulated At-Grade Foundation Wall Intersection
Foundation/Grade:
0.102 to 0.104W/m·K/0.059 to 0.060Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.4
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Shelf Angle & Brick Ties Supporting Brick Veneer and R-19 Batt Insulation in Stud Cavity – Exterior Insulated At-Grade Foundation Wall Intersection
Foundation/Grade:
0.853 to 0.905W/m·K/0.493 to 0.523Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.5
v1.7.3
Exterior Insulated Cross Laminated Timber (CLT) Wall Assembly with Continuous Rigid Insulation Supporting Fiber Cement Board – Concrete Slab and Exterior Insulated At-Grade Foundation Wall Intersection
Foundation/Grade:
0.457 to 0.632W/m·K/0.264 to 0.365Btu/ft·°F·hr
12 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.6
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap – Rim Joist and Split Insulated At-Grade Foundation Wall Intersection
Foundation/Grade:
0.017 to 0.024W/m·K/0.010 to 0.014Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.7
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap – Insulated Rim Joist and Split Insulated At-Grade Foundation Wall Intersection
Foundation/Grade:
0.009 to 0.018W/m·K/0.005 to 0.010Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.8
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap and R28 ICF Foundation Wall – Rim Joist and Split Insulated At-Grade Foundation Wall Intersection
Foundation/Grade:
0.008 to 0.014W/m·K/0.004 to 0.008Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.9
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap and R43 ICF Foundation Wall – Rim Joist and Split Insulated At-Grade Foundation Wall Intersection
Foundation/Grade:
0.015 to 0.022W/m·K/0.009 to 0.013Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.10
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap and Partially Wrapped R-22.5 Raft Slab Insulation – Slab on Grade Foundation Intersection
Foundation/Grade:
0.037 to 0.042W/m·K/0.022 to 0.024Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.11
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap and Partially Wrapped R-45 Raft Slab Insulation – Slab on Grade Foundation Intersection
Foundation/Grade:
0.046 to 0.049W/m·K/0.026 to 0.029Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.12
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap and Fully Wrapped R-22.5 Raft Slab Insulation – Slab on Grade Foundation Intersection
Foundation/Grade:
0.053 to 0.056W/m·K/0.031 to 0.033Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.13
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap and Fully Wrapped R-45 Raft Slab Insulation – Slab on Grade Foundation Intersection
Foundation/Grade:
0.071 to 0.074W/m·K/0.041 to 0.043Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.14
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap and R-22.5 Slab Insulation with Gravel Base – Slab on Grade Foundation Intersection
Foundation/Grade:
0.056 to 0.059W/m·K/0.032 to 0.034Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.6.15
v1.7.3
Interior Insulated Double Framed Wall 2x6 and 2x4 Wood Stud (16” o.c.) Wall Assembly with 2” Gap and R-45 Slab Insulation with Gravel Base – Slab on Grade Foundation Intersection
Foundation/Grade:
0.075 to 0.077W/m·K/0.043 to 0.045Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
8.7.1
v1.7.3
Exterior and Interior Insulated Wood Infill Wall Assembly with Wood Strapping and Continuous Insulation Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – Concrete Wall and Intermediate Floor Intersection with Flashing Bypassing Exterior Insulation
Interior to Exterior Wall:
0.110 to 0.232W/m·K/0.064 to 0.134Btu/ft·°F·hr
Intermediate Floor:
0.542 to 0.582W/m·K/0.313 to 0.336Btu/ft·°F·hr
6 detail scenarios
Concrete and Mass Masonry, Wood-Framed and Timber
Image of detail
8.7.2
v1.7.3
Exterior Insulated Intermediate CLT Floor with Metal Flashing with an Exterior Insulated Cross Laminated Timber (CLT) Wall and Wood Strapping and Exterior Rigid Insulation Supporting Fiber Cement Board
Intermediate Floor:
0.075 to 0.092W/m·K/0.044 to 0.053Btu/ft·°F·hr
3 detail scenarios
Wood-Framed and Timber
Image of detail
8.7.3
v1.7.3
Exterior and Interior Insulated 2x6 Wood Stud (16” o.c.) Wall Assembly with Wood Strapping and Continuous Insulation Supporting Fiber Cement Board and R-19 Batt Insulation in Stud Cavity – One-Hour Fire Wall Intersection
Interior to Exterior Wall:
0.008 to 0.024W/m·K/0.005 to 0.014Btu/ft·°F·hr
4 detail scenarios
Wood-Framed and Timber
Image of detail
9.1.3
v1.7.3
Interior Insulated Curb and Exposed Concrete Floor at Sliding Door
Doors and Balconies:
1.686W/m·K/0.974Btu/ft·°F·hr
1 detail scenario
Window-Wall
Image of detail
9.1.4
v1.7.3
Exterior Insulated Curb and Exposed Concrete Floor at Sliding Door supported by a steel angle
Doors and Balconies:
1.842 to 1.844W/m·K/1.064 to 1.065Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Image of detail
9.1.5
v1.7.3
Exterior Insulated Curb and Recessed Exposed Concrete Floor at Sliding Door supported by a steel angle
Doors and Balconies:
1.817 to 1.822W/m·K/1.050 to 1.053Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Image of detail
9.1.6
v1.7.3
Exterior Insulated Curb, Spandrel Panel, and Exposed Concrete Floor at Sliding Door
Doors and Balconies:
1.116W/m·K/0.645Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Image of detail
9.1.8
v1.7.3
Thermally Broken Slab with Exterior Insulated Curb with Window-Wall System and Spandrel Section at Sliding Door
Doors and Balconies:
0.852 to 0.856W/m·K/0.492 to 0.495Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Schoeck
Image of detail
9.1.9
v1.7.3
Window-Wall Spandrel Concrete Balcony and Curb Intersection with Sliding Door no Interior Stud Cavity Insulation
Doors and Balconies:
1.090 to 1.130W/m·K/0.630 to 0.653Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Image of detail
9.1.10
v1.7.3
Interior Insulated Steel-Framed Wall Curb at Sliding Door and Exterior Insulated Concrete Roof Deck
Doors and Balconies:
0.684W/m·K/0.395Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Image of detail
9.1.11
v1.7.3
Exterior and Interior Insulated Steel-Framed Wall Curb at Sliding Door and Exterior Insulated Concrete Roof Deck
Doors and Balconies:
0.169 to 0.180W/m·K/0.098 to 0.104Btu/ft·°F·hr
2 detail scenarios
Steel-Framed
Image of detail
9.1.12
v1.7.3
Window Wall System with Spandrel Panels and Sliding Door - Schöck Isokorb K65-V8 Thermal Break Concrete Balcony and Curb Intersection
Doors and Balconies:
0.594 to 0.738W/m·K/0.343 to 0.426Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Schoeck
Image of detail
9.1.13
v1.7.3
Window Wall System with Spandrel Panels and Sliding Door - Schöck Isokorb K10-V6 Thermal Break Concrete Balcony and Curb Intersection
Doors and Balconies:
0.490 to 0.656W/m·K/0.283 to 0.379Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Schoeck
Image of detail
9.1.14
v1.7.3
Window Wall System with Spandrel Panels and Sliding Door - Schöck Isokorb KXT65-V8 Thermal Break at Concrete Balcony and Curb Intersection
Doors and Balconies:
0.490 to 0.530W/m·K/0.283 to 0.306Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Schoeck
Image of detail
9.1.15
v1.7.3
Window Wall System with Spandrel Panels and Sliding Door - Schöck Isokorb KXT15-V6 Thermal Break at Concrete Balcony and Curb Intersection
Doors and Balconies:
0.392 to 0.442W/m·K/0.226 to 0.255Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Schoeck
Image of detail
9.1.16
v1.7.3
Exterior Insulated 2’’x6’’ Steel Stud (16’’ o.c.) Wall Assembly with FRP Vertical Brackets and Rail System Supporting Metal Cladding and Sliding Door – Intermittently Attached Balcony and Sliding Door Intersection
Doors and Balconies:
0.271W/m·K/0.157Btu/ft·°F·hr
Point Penetration:
0.271W/K/0.5Btu/°F·hr
2 detail scenarios
Steel-Framed
Image of detail
9.1.17
v1.7.3
Exterior and Interior Insulated 2’’x6’’ Steel Stud (16’’ o.c.) Wall Assembly with FRP Vertical Brackets and Rail System Supporting Metal Cladding with R-19 Batt in Stud Cavity and Sliding Door – Intermittently Attached Balcony and Sliding Door Intersection
Doors and Balconies:
0.261W/m·K/0.151Btu/ft·°F·hr
Point Penetration:
0.261W/K/0.5Btu/°F·hr
2 detail scenarios
Steel-Framed
Image of detail
9.1.18
v1.7.3
Exterior Insulated 2” x 6” Steel Stud (16” o.c.) Wall Assembly with Vertical Clips (24” o.c.) Supporting Cladding and Sliding Door – Concrete Balcony and Curb Intersection
Doors and Balconies:
0.682 to 0.836W/m·K/0.394 to 0.483Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
9.1.19
v1.7.3
Exterior and Interior Insulated 2” x 6” Steel Stud (16” o.c.) Wall Assembly with Vertical Clips (24” o.c.) Supporting Cladding with R-19 Batt in Stud Cavity and Sliding Door – Concrete Balcony and Curb Intersection
Doors and Balconies:
0.793 to 0.815W/m·K/0.458 to 0.471Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
9.1.20
v1.7.3
Exterior Insulated 2” x 6” Steel Stud (16” o.c.) Wall Assembly with Vertical Clips (24” o.c.) Supporting Cladding and Sliding Door – Structural Thermal Break at Concrete Balcony and Curb Intersection
Doors and Balconies:
0.163 to 0.377W/m·K/0.094 to 0.218Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
9.1.21
v1.7.3
Exterior and Interior Insulated 2” x 6” Steel Stud (16” o.c.) Wall Assembly with Vertical Clips (24” o.c.) Supporting Cladding with R-19 Batt in Stud Cavity and Sliding Door – Structural Thermal Break at Concrete Balcony and Curb Intersection
Doors and Balconies:
0.969 to 1.091W/m·K/0.560 to 0.631Btu/ft·°F·hr
5 detail scenarios
Steel-Framed
Image of detail
9.1.22
v1.7.3
Exterior Insulated Curb and Recessed Exposed Concrete Floor at Sliding Door with insulated frames and supported by angle (multiple options)
Doors and Balconies:
0.960W/m·K/0.555Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Thermal B
Image of detail
9.1.23
v1.7.3
TBS Thermal Break at Concrete Baloncy Intersection with Exterior Insulated Curb and Aluminum Sliding with Spandrel
Doors and Balconies:
0.419W/m·K/0.242Btu/ft·°F·hr
1 detail scenario
Window-Wall
Thermal B
Image of detail
9.1.24
v1.7.3
TBS Thermal Break at Concrete Baloncy Intersection with Exterior Insulated Curb at Aluminum Sliding and Exterior Insulated Steel Framed Wall
Doors and Balconies:
0.295W/m·K/0.170Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Thermal B
Image of detail
9.1.25
v1.7.3
TBS Thermal Break at Concrete Baloncy Intersection with Exterior Insulated Curb at Aluminum Sliding and Split Insulated Steel Framed Wall
Doors and Balconies:
0.323W/m·K/0.187Btu/ft·°F·hr
1 detail scenario
Steel-Framed
Thermal B
Image of detail
9.1.26
v1.9.0
Starline 4504 Series Sliding Door and 9200 Series Window Wall System at Balcony Intersection with Recessed Concrete Curb
Doors and Balconies:
1.260W/m·K/0.728Btu/ft·°F·hr
1 detail scenario
Window-Wall
Starline Windows
Image of detail
9.1.27
v1.9.0
Starline 4500R Series Sliding Door and 9200 Series Window Wall System at Balcony Intersection with Recessed Concrete Curb
Doors and Balconies:
1.240W/m·K/0.716Btu/ft·°F·hr
1 detail scenario
Window-Wall
Starline Windows
Image of detail
9.1.28
v1.9.0
Starline 9512 Series Outswing Door and 9200 Series Window Wall System at Balcony Intersection with Recessed Concrete Curb
Doors and Balconies:
1.290W/m·K/0.745Btu/ft·°F·hr
1 detail scenario
Window-Wall
Starline Windows
Image of detail
9.1.29
v1.9.0
Starline 4506 Series Sliding Door and 9600 Series Window Wall System at Balcony Intersection with Recessed Concrete Curb
Doors and Balconies:
1.240W/m·K/0.716Btu/ft·°F·hr
1 detail scenario
Window-Wall
Starline Windows
Image of detail
9.1.30
v1.9.0
Starline 4600 Series Sliding Door and 9600 Series Window Wall System at Balcony Intersection with Recessed Concrete Curb
Doors and Balconies:
1.290W/m·K/0.745Btu/ft·°F·hr
1 detail scenario
Window-Wall
Starline Windows
Image of detail
9.1.31
v1.9.0
Starline 9560 Series Outswing Door and 9600 Series Window Wall System at Balcony Intersection with Recessed Concrete Curb
Doors and Balconies:
1.250W/m·K/0.722Btu/ft·°F·hr
1 detail scenario
Window-Wall
Starline Windows
Image of detail
9.2.1
v1.9.0
Starline 9200 Series Window-Wall Vision Glazing at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.917 to 0.986W/m·K/0.530 to 0.570Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.2
v1.9.0
Starline 9200 Series Window-Wall Glass Spandrel at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.910 to 0.981W/m·K/0.526 to 0.567Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.3
v1.9.0
Starline 9200 Series Window-Wall Raised Panel Spandrel at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.924 to 0.995W/m·K/0.534 to 0.575Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.4
v1.9.0
Starline 9200 Series Window-Wall Glass Spandrel with Interior Insulation at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.897 to 0.977W/m·K/0.518 to 0.565Btu/ft·°F·hr
6 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.5
v1.9.0
Starline 9200 Series Window-Wall Raised Panel Spandrel with Interior Insulation at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.904 to 0.985W/m·K/0.522 to 0.569Btu/ft·°F·hr
6 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.6
v1.9.0
Starline 9600 Series Window-Wall Vision Glazing at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.873 to 0.942W/m·K/0.504 to 0.544Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.7
v1.9.0
Starline 9600 Series Window-Wall Glass Spandrel with Interior Insulation at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.884 to 0.961W/m·K/0.511 to 0.555Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.8
v1.9.0
Starline 9600 Series Window-Wall Raised Panel Spandrel with Interior Insulation at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.897 to 0.974W/m·K/0.518 to 0.563Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.9
v1.9.0
Starline 9600 Series Window-Wall Glass Spandrel with Interior Insulation at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.858 to 0.949W/m·K/0.496 to 0.548Btu/ft·°F·hr
6 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.2.10
v1.9.0
Starline 9600 Series Window-Wall Raised Panel Spandrel with Interior Insulation at Balcony Intersection with Exterior Insulated Concrete
Doors and Balconies:
0.869 to 0.958W/m·K/0.502 to 0.554Btu/ft·°F·hr
6 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.3.1
v1.9.0
Starline 4504 Series Sliding Door Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.108 to 0.247W/m·K/0.062 to 0.143Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.3.2
v1.9.0
Starline 4500R Series Sliding Door Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.124 to 0.266W/m·K/0.072 to 0.154Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.3.3
v1.9.0
Starline 9512 Series Outswing Door Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.086 to 0.232W/m·K/0.050 to 0.134Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.3.4
v1.9.0
Starline 4506 Series Sliding Door Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.112 to 0.551W/m·K/0.065 to 0.318Btu/ft·°F·hr
5 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.3.5
v1.9.0
Starline 4600 Series Sliding Door Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.067 to 0.470W/m·K/0.039 to 0.272Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.3.6
v1.9.0
Starline 9560 Series Outswing Door Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.102 to 0.540W/m·K/0.059 to 0.312Btu/ft·°F·hr
3 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.3.7
v1.9.0
Starline 9200 Window Wall Spandrel Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.035 to 0.044W/m·K/0.020 to 0.025Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Starline Windows
Image of detail
9.3.8
v1.9.0
Starline 9200 Window Wall Spandrel with Interior Insulation Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.056 to 0.096W/m·K/0.032 to 0.055Btu/ft·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
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9.3.9
v1.9.0
Starline 9600 Window Wall Spandrel Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.015 to 0.235W/m·K/0.009 to 0.136Btu/ft·°F·hr
2 detail scenarios
Window-Wall
Starline Windows
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9.3.10
v1.9.0
Starline 9600 Window Wall Spandrel with Interior Insulation Sill Interface with Exterior Insulated Concrete
Doors and Balconies:
0.039 to 0.115W/m·K/0.023 to 0.066Btu/ft·°F·hr
4 detail scenarios
Window-Wall
Starline Windows
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10.1.1
v1.7.3
Exterior Insulated Sloped Metal Roof with Continuous Metal Sub-Girts at 12"
Roof:
0.640 to 0.807W/m²·K/0.113 to 0.142Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
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10.1.2
v1.7.3
Exterior Insulated Sloped Metal Roof with Continuous Metal Sub-Girts at 24"
Roof:
0.387 to 0.535W/m²·K/0.068 to 0.094Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
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10.1.3
v1.7.3
Exterior Insulated Sloped Metal Roof with Continuous Metal Sub-Girts at 36"
Roof:
0.308 to 0.445W/m²·K/0.054 to 0.078Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
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10.1.4
v1.7.3
Insulated Sheet Steel Roof Supported by Thermal Chairs – Baseline System – Clear Roof
Roof:
0.137 to 0.186W/m²·K/0.024 to 0.033Btu/ft²·°F·hr
19 detail scenarios
Steel-Framed
CSSBI
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10.1.5
v1.7.3
Insulated Sheet Steel Roof Supported by Thermal Chairs – Additional Scenarios – Clear Roof
Roof:
0.153 to 0.187W/m²·K/0.027 to 0.033Btu/ft²·°F·hr
9 detail scenarios
Steel-Framed
CSSBI
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10.1.6
v1.7.3
Insulated Sheet Steel Roof with Thermal Chairs at 36" o.c. and Purlins at 48" o.c.
Roof:
0.131 to 0.293W/m²·K/0.023 to 0.052Btu/ft²·°F·hr
12 detail scenarios
Steel-Framed
CSSBI
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10.1.7
v1.7.3
Insulated Standing Seam Roof with Thermal Chairs and Insulation Compressed Between and Over Hat Tracks
Roof:
0.156 to 0.179W/m²·K/0.027 to 0.032Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
CSSBI
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10.1.8
v1.7.3
Insulated Standing Seam Roof with Insulation Draped
Roof:
0.361W/m²·K/0.064Btu/ft²·°F·hr
1 detail scenario
Steel-Framed
CSSBI
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10.1.9
v1.7.3
Exterior Insulated Low Sloped Roof (3.4 fasteners/m2, 0.3 fasteners/ft2) – Clear Roof Assembly
Point Penetration:
0.001 to 0.007W/K/0.0 to 0.0Btu/°F·hr
Roof:
0.154 to 0.253W/m²·K/0.027 to 0.045Btu/ft²·°F·hr
13 detail scenarios
Steel-Framed
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10.1.10
v1.7.3
Exterior Insulated Sloped Metal Roof with Bearing Plates 18” x 48” spacing – Clear Roof Assembly
Point Penetration:
0.004W/K/0.0Btu/°F·hr
Roof:
0.111 to 0.201W/m²·K/0.020 to 0.035Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
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10.1.11
v1.7.3
Exterior Insulated Sloped Metal Roof with High Compressive Strength Mineral Wool Insulation and with Bearing Plates 18” x 48” spacing – Clear Roof Assembly
Point Penetration:
0.004W/K/0.0Btu/°F·hr
Roof:
0.163 to 0.289W/m²·K/0.029 to 0.051Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
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10.1.12
v1.7.3
Ventilated Wood Frame Low Sloped Roof – Clear Roof Assembly
Roof:
0.139 to 0.257W/m²·K/0.024 to 0.045Btu/ft²·°F·hr
3 detail scenarios
Wood-Framed and Timber
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10.1.13
v1.7.3
Exterior Insulated Low Sloped Roof (10.8 fasteners/m2, 1 fasteners/ft2)– Clear Roof Assembly
Point Penetration:
0.006 to 0.008W/K/0.0 to 0.0Btu/°F·hr
Roof:
0.199 to 0.315W/m²·K/0.035 to 0.055Btu/ft²·°F·hr
6 detail scenarios
Steel-Framed
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10.1.14
v1.7.3
Sloped Wood Framed Roof with Insulation at Ceiling
Roof:
0.180W/m²·K/0.032Btu/ft²·°F·hr
1 detail scenario
Wood-Framed and Timber
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10.1.15
v1.7.3
Sloped Wood Framed Roof with Insulation at Roof Sheathing
Roof:
0.210W/m²·K/0.037Btu/ft²·°F·hr
1 detail scenario
Wood-Framed and Timber
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10.1.16
v1.7.3
Exterior Insulated Low Sloped Roof with Fully Adhered Roof Membrane and Mineral Wool Insulation – Clear Roof Assembly
Roof:
0.110 to 0.250W/m²·K/0.019 to 0.044Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
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10.1.17
v1.7.3
Exterior Insulated Low Sloped Roof with Fully Adhered Roof Membrane and Mineral Wool and Polyisocyanuarte Insulation – Clear Roof Assembly
Roof:
0.100 to 0.240W/m²·K/0.018 to 0.042Btu/ft²·°F·hr
4 detail scenarios
Steel-Framed
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10.1.18
v1.7.3
Exterior Insulated Sloped Metal Roof with ROCKWOOL TopRock DD Multifix Stone Wool Insulation and Bearing Plates 18” x 48” spacing – Clear Roof Assembly
Roof:
0.170 to 0.300W/m²·K/0.030 to 0.053Btu/ft²·°F·hr
3 detail scenarios
Steel-Framed
ROCKWOOL
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10.2.1
v1.7.3
Metal Roof Ridge Intersection
Roof-to-Wall Transition:
0.471 to 0.483W/m·K/0.272 to 0.279Btu/ft·°F·hr
2 detail scenarios
N/A, Steel-Framed
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10.2.2
v1.7.3
Concrete Curb or Wall Intersection
Roof:
0.260W/m²·K/0.046Btu/ft²·°F·hr
Roof-to-Wall Transition:
0.927W/m·K/0.536Btu/ft·°F·hr
2 detail scenarios
Concrete, Concrete and Mass Masonry
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10.2.3
v1.7.3
Owens Corning Floating Concrete Wall Intersection
Roof:
0.140 to 0.260W/m²·K/0.025 to 0.046Btu/ft²·°F·hr
Roof-to-Wall Transition:
0.000W/m·K/0.000Btu/ft·°F·hr
6 detail scenarios
Concrete, Concrete and Mass Masonry
Owens Corning
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10.2.4
v1.7.3
Metal Roof Intersection at Curtain-Wall with Through Beam and Metal Deck
Roof:
0.460W/m²·K/0.081Btu/ft²·°F·hr
Roof-to-Wall Transition:
1.177W/m·K/0.680Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall, Steel-Framed
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10.2.5
v1.7.3
Metal Roof Intersection at Curtain-Wall with Through Beam and Thermally Broken Metal Deck
Roof:
0.460W/m²·K/0.081Btu/ft²·°F·hr
Roof-to-Wall Transition:
0.607W/m·K/0.351Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall, Steel-Framed
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10.2.6
v1.7.3
Metal Roof Intersection at Curtain-Wall with Through Beam and Metal Deck and Fully Insulated Soffit
Roof:
0.460W/m²·K/0.081Btu/ft²·°F·hr
Roof-to-Wall Transition:
0.633W/m·K/0.366Btu/ft·°F·hr
2 detail scenarios
Curtain-Wall, Steel-Framed
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10.2.7
v1.7.3
Aluminum Framed Double Glazed Skylight – Exterior Insulated Concrete Curb Intersection
Roof:
2.097W/m²·K/0.369Btu/ft²·°F·hr
1 detail scenario
Curtain-Wall
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10.3.1
v1.7.3
Exterior Insulated Conventional Flat Roof - Roof Anchor
Point Penetration:
0.338W/K/0.6Btu/°F·hr
1 detail scenario
Steel-Framed
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10.3.2
v1.7.3
Exterior Insulated Conventional Flat Roof - Armatherml 500 Thermal Break under Roof Anchor
Point Penetration:
0.068 to 0.285W/K/0.1 to 0.5Btu/°F·hr
2 detail scenarios
Steel-Framed
Armatherm
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10.3.3
v1.7.3
Exterior Insulated Conventional Low-Sloped Roof – Roof Anchor
Point Penetration:
0.086 to 0.106W/K/0.2 to 0.2Btu/°F·hr
2 detail scenarios
Steel-Framed
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10.3.4
v1.7.3
Exterior Insulated Conventional Low-Sloped Roof – Thermal Break in Roof Anchor
Point Penetration:
0.093 to 0.097W/K/0.2 to 0.2Btu/°F·hr
2 detail scenarios
Steel-Framed
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10.4.1
v1.7.3
Exterior Insulated Low Sloped Roof with Fully Adhered Roof Membrane and Mineral Wool Insulation - Flange-Style Drain Penetration
Point Penetration:
0.342 to 0.637W/K/0.6 to 1.2Btu/°F·hr
4 detail scenarios
Steel-Framed
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10.4.2
v1.7.3
Exterior Insulated Low Sloped Roof with Fully Adhered Roof Membrane and Mineral Wool and Polyisocyanurate Insulation - Flange-Style Drain Penetration
Point Penetration:
0.336 to 0.604W/K/0.6 to 1.1Btu/°F·hr
4 detail scenarios
Steel-Framed