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A single-run multi-mode pushover analysis to account for the effect of higher modes in estimating the seismic demands of tall buildings

机译:单次运行多模推覆分析,考虑了较高模在估算高层建筑抗震需求中的作用

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摘要

In this paper, a simpler and more effective procedure, called the single-run multi-mode pushover (SMP) analysis, is proposed to account for the effect of higher modes in estimating the seismic demands of tall buildings. The main simplification of this procedure is that the effect of higher modes is concentrated into a single invariant lateral force distribution computed by algebraically adding the modal story forces whereby a single-run multi-mode pushover analysis is implemented. An important advantage of the proposed procedure is that the spectral pseudo-acceleration of ground motions (or design spectrum) as a weighting parameter as well as the effective modal mass ratio is incorporated into the modal story forces. Then, the effect of the frequency content of ground motions is considered in the modal lateral forces. Another advantage of the SMP procedure is that the reversal of sign in the story forces of higher modes is taken into account. In this procedure, the seismic demands are finally obtained by enveloping the results of single-run conventional and single-run multi-mode pushover analyses. To assess the accuracy of the proposed procedure, three special steel moment-resisting frames are considered. The seismic demands resulting from the SMP procedure are compared to those from the nonlinear response history analysis as a benchmark solution, as well as to those predicted from the modal pushover analysis and the consecutive modal pushover procedures. The results demonstrate that the SMP procedure can accurately estimate the seismic demands of tall buildings.
机译:本文提出了一种更简单有效的方法,称为单次运行多模式推覆(SMP)分析,以考虑较高模式在估计高层建筑的地震需求中的作用。此过程的主要简化是,将较高模式的影响集中到通过代数相加模态故事力而计算出的单个不变侧向力分布,从而实现单次运行的多模式下垂分析。拟议程序的一个重要优点是将地面运动(或设计频谱)的频谱伪加速作为权重参数以及有效模态质量比纳入了模态故事力。然后,在模态横向力中考虑了地震动频率成分的影响。 SMP程序的另一个优点是,考虑了较高模式的故事情节中符号的反转。在此过程中,通过包络单次运行常规和单次运行多模式下垂分析的结果,最终获得了地震需求。为了评估建议程序的准确性,考虑了三个特殊的钢制抗弯框架。将SMP程序产生的地震需求与非线性响应历史分析中的地震需求(作为基准解决方案)以及模态下推分析和连续模态下推程序所预测的地震需求进行比较。结果表明,SMP程序可以准确估算高层建筑的抗震要求。

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