脉冲型地震动参数对多层建筑层间漂移谱的影响

IF 0.7 Q4 ENGINEERING, CIVIL
B. Ghanbari, A. Akhaveissy
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引用次数: 2

摘要

本文试图研究各种脉冲式地震动参数和当地场地条件对具有特殊剪切和弯曲性能的不同多层建筑线性响应的影响。多层建筑采用具有代表性横向刚度比的剪切和弯曲梁组合建模。本次研究共选取了61个近断层脉状地震动。评价了峰值地面速度(PGV)、PGV/PGA、破裂距离、Arias烈度、地震震级和当地场地条件对多层建筑最大层间漂移谱(MIDS)和层间漂移比(IDR)沿高度分布的影响。研究发现,在脉动地震动作用下,结构的基本周期和横向刚度比都能显著改变建筑物的最大层间位移需求。近断层脉状地震动对具有弯曲行为的多层建筑比具有剪切行为的多层建筑更危险。峰值地面速度(PGV)和Arias强度(I)对层间漂移谱的影响比其他参数更明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of pulse-like ground motions parameters on inter-story drift spectra of multi-story buildings
This article attempts to study the effect of various pulse-like ground motion parameters and local site conditions on the linear response of different multi-story buildings with special shear and flexural behaviour. The multi-story buildings are modelled using a combination of a shear and flexural beams with representative lateral stiffness ratios. A total of 61 near-fault pulse-like ground motions are selected for this study. The effects of peak ground velocity (PGV), PGV/PGA, rupture distance, Arias intensity, earthquake magnitude and local site conditions on maximum inter-story drift spectra (MIDS) and distribution of the inter-story drift ratio (IDR) along the height of the multi-story buildings are evaluated. It was observed that both the fundamental period of the structure and the lateral stiffness ratio can significantly change maximum inter-story drift demands in buildings subjected to pulse-like ground motions. The near-fault pulse-like ground motions are more dangerous for multi-story buildings with flexural behaviour than those with shear behaviour. The effects of peak ground velocity (PGV) and Arias intensity (I) on inter-story drift spectra is more obvious than others parameters.
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来源期刊
International Journal of Structural Engineering
International Journal of Structural Engineering Engineering-Civil and Structural Engineering
CiteScore
2.40
自引率
23.10%
发文量
24
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