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A modal shear-based pushover procedure for estimating the seismic demands of tall building structures

机译:基于模态剪切的推覆程序,用于估算高层建筑结构的抗震要求

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摘要

Non-linear static procedure (NSP) has been considered as a popular method to predict seismic force and deformation demands for performance evaluation of the structures, in recent years. However, this evaluation tool is restricted to low-rise and regular buildings in which the fundamental vibration mode dominates the structural behavior. Recently, some advanced procedures have been presented to oversee these conventional procedure deficiencies. In the current study, a new nonlinear static procedure considering the effects of higher modes in structural responses is presented. This approach assigns a contribution factor for each mode based on modal shear distribution. The offered contribution factor can be applied for determining the importance of each mode in lateral load pattern formation. In order to verify the results, some other types of pushover-based analysis are also performed and the responses obtained from each NSP are compared with those of rigorous non-linear response history analysis (NL-RHA). Results demonstrated the efficiency of the proposed method in accurate prediction of the seismic demands of high-rise buildings.
机译:近年来,非线性静态过程(NSP)被认为是预测地震力和变形需求以评估结构性能的一种流行方法。但是,此评估工具仅限于基本振动模式主导结构行为的低层和常规建筑物。最近,已经提出了一些高级程序来监督这些常规程序的缺陷。在当前的研究中,提出了一种新的非线性静态程序,该程序考虑了高阶模态对结构响应的影响。该方法基于模态剪切分布为每种模式分配一个贡献因子。所提供的贡献因子可用于确定每种模式在侧向载荷模式形成中的重要性。为了验证结果,还执行了其他一些类型的基于推覆的分析,并将从每个NSP获得的响应与严格的非线性响应历史分析(NL-RHA)进行了比较。结果证明了该方法在准确预测高层建筑地震需求方面的有效性。

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