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- W2267506517 abstract "Tall buildings are built with an abundant amount of resources because of their enormous scale. This paper presents sustainable structural engineering strategies for tall buildings, which will lead to the construction of tall buildings with less amount of structural material to meet design requirements. Selecting a particular structural system for tall building design involves many complex factors, such as availability of resources, architectural aesthetics, spatial organizations and structural efficiency. Among these various factors, this study primarily investigates lateral stiffness-based comparative structural efficiency between today's prevalent tall building structural systems of different configurations. Diagrid structures of various uniform and varying angle configurations are studied to determine more efficient geometric configurations of the system. Braced tubes of different diagonal configurations and column spacings are comparatively studied. For outrigger structures, optimal stiffness distribution between the building core and perimeter structural members is investigated. Through these studies, more efficient structural configurations of each system are identified, which will help save our limited resources and construct more sustainable built environments." @default.
- W2267506517 created "2016-06-24" @default.
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- W2267506517 date "2012-01-01" @default.
- W2267506517 modified "2023-09-25" @default.
- W2267506517 title "Sustainable structural engineering for tall buildings" @default.
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