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Structural Glass Pavilion
Arup provided structural engineering for a structural glass pavilion designed by Desai/Chia Architecture for a private residence in New York. The glass pavilion is a 25ft wide by 60ft long by 15ft tall cube. The pavilion's exterior will be clad entirely in glass with the exemption of a small area of solid roof above the core. The glass pavilion includes a glass panel roof supported by a combination of structural steel frames and glass beams. The mullion free perimeter glass wall supports the exterior edge of the glass roof panels. The main lateral force resisting system consists of structural steel frames at the core and perimeter glass walls acting as shear walls. This paper covers the basic design approach and structural system for the glass pavilion including the importance of redundancy and some of the analysis techniques used in the design the glass structure.
Structural Glass Pavilion
Arup provided structural engineering for a structural glass pavilion designed by Desai/Chia Architecture for a private residence in New York. The glass pavilion is a 25ft wide by 60ft long by 15ft tall cube. The pavilion's exterior will be clad entirely in glass with the exemption of a small area of solid roof above the core. The glass pavilion includes a glass panel roof supported by a combination of structural steel frames and glass beams. The mullion free perimeter glass wall supports the exterior edge of the glass roof panels. The main lateral force resisting system consists of structural steel frames at the core and perimeter glass walls acting as shear walls. This paper covers the basic design approach and structural system for the glass pavilion including the importance of redundancy and some of the analysis techniques used in the design the glass structure.
Structural Glass Pavilion
Wolfe, Seth (Autor:in) / Argiris, Leo (Autor:in)
Structures Congress 2010 ; 2010 ; Orlando, Florida, United States
Structures Congress 2010 ; 2645-2649
18.05.2010
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
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