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Architectural Fabric Structures

- The Use of Tensioned Fabric Structures by Federal Agencies

Om Architectural Fabric Structures

This reprint of the 1985 architectural classic discusses a technology that offers an important alternative to conventional construction, having unique properties that make it useful for certain applications. Due to improvements in materials, structural analysis, and environmental control, these structures can often be considered permanent buildings. The membrane is the principal structural component of a tensioned fabric structure. Under certain circumstances, a tensioned fabric structure can reduce energy consumption in a building. The natural light from the translucent surface reduces requirements for artificial lighting, the reflectivity of the skin reduces heat gain, and the radiation of waste heat from the warm fabric surface to cool sky results in an energy-efficient building in warm climates. In cold climates, a second skin or liner is often used, often with glass fiber insulation in the cavity to further reduce heat loss. In general, as permanent structures, tensioned fabric technology is underutilized. There are many projects or parts of projects that could employ this system.

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  • Språk:
  • Engelska
  • ISBN:
  • 9781410203915
  • Format:
  • Häftad
  • Sidor:
  • 112
  • Utgiven:
  • 30. december 2002
  • Mått:
  • 140x216x7 mm.
  • Vikt:
  • 150 g.
  Fri leverans
Leveranstid: 2-4 veckor
Förväntad leverans: 23. maj 2025

Beskrivning av Architectural Fabric Structures

This reprint of the 1985 architectural classic discusses a technology that offers an important alternative to conventional construction, having unique properties that make it useful for certain applications. Due to improvements in materials, structural analysis, and environmental control, these structures can often be considered permanent buildings. The membrane is the principal structural component of a tensioned fabric structure. Under certain circumstances, a tensioned fabric structure can reduce energy consumption in a building. The natural light from the translucent surface reduces requirements for artificial lighting, the reflectivity of the skin reduces heat gain, and the radiation of waste heat from the warm fabric surface to cool sky results in an energy-efficient building in warm climates. In cold climates, a second skin or liner is often used, often with glass fiber insulation in the cavity to further reduce heat loss. In general, as permanent structures, tensioned fabric technology is underutilized. There are many projects or parts of projects that could employ this system.

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