Linked from
The 17 pages that link to Building envelope, each with the reason it gives.
Thermal insulationRelated: Insulation in walls, roofs, and floors limits heat exchange across this boundary.
Adaptive reuseRelated: Its condition and performance constrain what can be retained or upgraded.
Curtain wallNarrower topic: Curtain walls are one kind of building-envelope assembly.
Thermal resistanceNarrower topic: Its walls, roof, windows, and floors form combined heat-flow paths.
Passive solar building designNarrower topic: Its insulation and airtightness govern how long captured heat remains indoors.
StuccoNarrower topic: Stucco forms one layer of the envelope and must work with its drainage and weather barriers.
Sustainable architectureBroader topic: Its insulation, airtightness, and solar control strongly shape energy use and comfort.
Heating, ventilation, and air conditioningRelated: Its insulation and air leakage strongly affect heating and cooling demand.
Building insulationNarrower topic: Insulation is one part of this boundary, alongside weather control and structural layers.
Climate-responsive architectureRelated: Its insulation, airtightness, and openings mediate heat, air, and moisture exchange.
Expanded polystyreneRelated: Expanded polystyrene is used in insulation layers within walls, roofs, and foundations.
Renzo PianoRelated: His projects use the envelope to mediate light, climate, views, and a building's urban presence.
House (building)Related: The house envelope limits unwanted heat, air, and moisture movement.
Architectural engineeringRelated: Envelope performance links structural detailing with energy, moisture, and comfort requirements.
Building (structure)Related: Walls, roofs, windows, and doors regulate weather, air, and heat at the boundary.
Toyo ItoRelated: Ito’s work often treats this boundary as porous and responsive rather than as a sealed shell.
Building designRelated: Its assembly mediates weather, energy, daylight, and views.