Disproportionate Collapse Mitigation in Tall Mass Timber Buildings

H. Daneshvar, Y. Chui
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Abstract

Tall buildings are a unique type of structure with their own characteristic behaviour. They are most often occupied by a large number of people; therefore, their damage, loss of functionality, or, in worst case scenario, collapse will lead to catastrophic consequences. There are methodologies intended to provide structural integrity or increase structural robustness in tall buildings, thereby making structures resistant to disproportionate collapse, which is characterized by a cascading progression of damage that is not proportionate to the initial failure. Tall buildings are commonly constructed with steel and concrete. As a result, most of the attempts at providing structural integrity are dedicated to mitigating the effect of disproportionate collapse in the steel and concrete members, connections, and their systems. On the other hand, with rising demand for new sustainable buildings in urban areas, tall mass timber buildings have attracted increased attention nationally and internationally. Ease of modularization and offsite construction is one of the greatest advantages of using mass timber in tall building construction in the congested urban areas of major cities. A major challenge facing the engineering community is the lack of research studies regarding the structural robustness required to mitigate the potential of disproportionate collapse. The current study seeks to begin the process of understanding the behaviour of mass timber components and assemblages, and make recommendations regarding their performance and possible means to mitigate the occurrence of disproportionate collapse. These recommendations would lead to safer structural performance in the event of localized damage that has the potential to spread to a disproportionately large part of the structure.
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大型高层木结构建筑的不成比例倒塌缓解
高层建筑是一种独特的结构类型,具有自己的特点。它们通常被很多人占据;因此,它们的损坏、功能丧失,或者在最坏的情况下,崩溃将导致灾难性的后果。有一些方法旨在提供高层建筑的结构完整性或增加结构稳健性,从而使结构能够抵抗不成比例的倒塌,其特征是破坏的级联进展与初始破坏不成比例。高层建筑通常用钢和混凝土建造。因此,大多数提供结构完整性的尝试都致力于减轻钢和混凝土构件、连接及其系统的不成比例倒塌的影响。另一方面,随着城市对新型可持续建筑的需求不断增加,高层木结构建筑越来越受到国内外的关注。易于模块化和非现场施工是在大城市拥挤的城市地区使用大量木材建造高层建筑的最大优势之一。工程界面临的一个主要挑战是缺乏关于减轻不成比例倒塌可能性所需的结构稳健性的研究。目前的研究旨在开始了解大量木材组件和组合的行为,并就其性能和可能的方法提出建议,以减轻不成比例倒塌的发生。这些建议将导致更安全的结构性能,在局部损坏的情况下,有可能蔓延到结构的不成比例的大部分。
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