Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Towards optimal design of high‐rise building tube systems
The primary objectives of this study are to investigate effects of varying design parameters on the tube action and shear lag behaviour of a typical reinforced concrete frame‐wall tube building, and propose optimal design approaches for similar tube structures. A parametric study was conducted with selected key design variables on the performance of a 55‐storey hotel building planned in New York City. The lateral force resistance of the case study building is primarily exerted by exterior shear walls in one direction and by exterior moment frames in the other direction, enhanced by the tube action credited to the connection of the walls and the frames. The design variables considered for the parametric study include the column depth, beam depth, column width and beam width of the moment frames. The performance of each model was assessed in terms of overall and critical (maximum) storey drifts, force distributions between various lateral force‐resisting members and shear lag behaviour. Overall, the effects of the column depth (column dimension parallel to the frame direction) on the tube action and shear lag behaviour were more prominent than the other member dimensions. Copyright © 2010 John Wiley & Sons, Ltd.
Towards optimal design of high‐rise building tube systems
The primary objectives of this study are to investigate effects of varying design parameters on the tube action and shear lag behaviour of a typical reinforced concrete frame‐wall tube building, and propose optimal design approaches for similar tube structures. A parametric study was conducted with selected key design variables on the performance of a 55‐storey hotel building planned in New York City. The lateral force resistance of the case study building is primarily exerted by exterior shear walls in one direction and by exterior moment frames in the other direction, enhanced by the tube action credited to the connection of the walls and the frames. The design variables considered for the parametric study include the column depth, beam depth, column width and beam width of the moment frames. The performance of each model was assessed in terms of overall and critical (maximum) storey drifts, force distributions between various lateral force‐resisting members and shear lag behaviour. Overall, the effects of the column depth (column dimension parallel to the frame direction) on the tube action and shear lag behaviour were more prominent than the other member dimensions. Copyright © 2010 John Wiley & Sons, Ltd.
Towards optimal design of high‐rise building tube systems
Shin, Myoungsu (Autor:in) / Kang, Thomas H.‐K. (Autor:in) / Pimentel, Benjamin (Autor:in)
The Structural Design of Tall and Special Buildings ; 21 ; 447-464
01.06.2012
18 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Optimal Design of SRC Transfer Beam of High-Rise Building
British Library Conference Proceedings | 2013
|HIGH-RISE STRUCTURES - Structural design of high-rise building structures
Online Contents | 2002
|Super high-rise building core tube breaststroke creeping formwork device
Europäisches Patentamt | 2015
|Hollow core tube structure system of high-rise building frame
Europäisches Patentamt | 2015
|Quickly-assembled core tube applied to high-rise modular building
Europäisches Patentamt | 2024
|