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Seismic behavior of suspended building structures with semi-rigid connections

机译:半刚性连接的悬空建筑结构的抗震性能

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摘要

A method is presented in this paper to analyze the dynamic response behavior of suspended building structures. The effect of semi-rigid connections that link suspended floors with their supporting structure on structural performance is investigated. The connections, like the restrains in non-structural suspended components, are designed as semi-rigid to avoid pounding and as energy dissipation components to reduce structural response. Parametric study is conducted to assess the dynamic characteristics of suspended building structures with varying connection stiffness and suspended mass ratios. Modal analysis is applied to identify the two distinct sets of vibration modes, pendulum and bearing, of a suspended building structure. The cumulative modal mass is discussed to ensure the accuracy in applying the method of response spectrum analysis by SRSS or CQC modal combination. Case studies indicate that a suspended building having semi-rigid connections and proper suspended mass ratios can avoid local pounding failure and reduce seismic response.
机译:本文提出了一种分析悬空建筑结构动力响应行为的方法。研究了将悬浮地板与其支撑结构连接起来的半刚性连接对结构性能的影响。像非结构悬挂部件中的约束一样,这些连接被设计为半刚性以避免撞击,而设计为能量耗散部件以减少结构响应。进行参数研究以评估具有不同连接刚度和悬浮质量比的悬浮建筑结构的动力特性。应用模态分析来识别悬空建筑结构的两种不同的振动模式,分别是摆和轴承。讨论了累积模态质量,以确保应用SRSS或CQC模态组合的响应谱分析方法时的准确性。案例研究表明,具有半刚性连接和适当悬吊质量比的悬吊建筑可以避免局部撞击失败并降低地震响应。

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