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Seismic Design of Cross-Laminated Timber Platform Buildings Using a Coupled Shearwall Concept

机译:基于耦合剪力墙概念的交叉层压木平台建筑抗震设计

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摘要

Cross-laminated timber (CLT) is an engineered wood material that was introduced in the last decade as a promising candidate for building wood structures higher than 10 stories. Thus far, a handful of tall residential CLT buildings have been built in low seismic regions around the world. Previous full-scale seismic shaking table tests of multistory CLT buildings revealed that this system is susceptible to overturning damage as a result of lateral seismic loads. To effectively resist overturning, a new floor connection detail was proposed to engage CLT floor panels as coupling elements for CLT shearwall stacks in the building floor plan. This approach is fundamentally different from traditional isolated shearwall stack design methods used in multistory light-framed wood buildings. The proposed method was illustrated through the seismic design of a 12-story CLT building located in Los Angeles, California, which was then subjected to the design equivalent lateral force to evaluate the conservativeness in the proposed simplified calculation.
机译:交叉层压木材(CLT)是一种工程木材料,在过去的十年中被引入,是建造10层以上木结构的有希望的候选者。迄今为止,在世界各地地震频发的地区已经建造了少数高层CLT住宅建筑。先前对多层CLT建筑物进行的全面地震台试验表明,该系统容易受到侧向地震载荷的倾覆破坏。为了有效抵抗倾覆,提出了一个新的地板连接细节,以将CLT地板面板用作建筑平面图中CLT剪力墙堆栈的耦合元件。这种方法与多层轻型木结构建筑中使用的传统隔离式剪力墙叠层设计方法根本不同。通过对位于加利福尼亚州洛杉矶的12层CLT建筑物的抗震设计说明了所提出的方法,然后对该建筑物施加了设计等效横向力以评估所提议的简化计算中的保守性。

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