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Effects of pulse-like nature of forward directivity ground motions on the seismic behavior of steel moment frames

机译:脉冲样性质对钢力矩框架抗震性能的脉冲样本质

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In the structures with high level of ductility, the earthquake energy dissipation in structural components is an important factor that describes their seismic behavior. Since the connection details play a major role in the ductile behavior of structure, in this paper, the seismic response of 3-, 5- and 8-story steel special moment frames (SMFs) is investigated by considering the effects of panel zone modeling and the influence of forward-directivity near-field ground motions. To provide a reasonable comparison, selected records of both near and far-field are used in the nonlinear time-history analysis of models. The results of the comparison of the median maximum inter-story drift under excitation by near-field (NF) records and the far-field (FF) ground motions show that the inter-story drift demands can be obtained 3.47, 4.86 and 5.92 times in 3-, 5- and 8-story structures, respectively, undergoing near-field earthquakes.
机译:在具有高延展性水平的结构中,结构部件中的地震能量耗散是描述其地震行为的重要因素。 由于连接细节在结构的延性行为中发挥着重要作用,本文通过考虑面板区域建模的影响,研究了3-,5层和8层钢的特殊时刻框架(SMF)的地震响应 正向方向近场地面运动的影响。 为了提供合理的比较,在模型的非线性时间历史分析中使用近和远场的所选记录。 通过近场(NF)记录和远场(FF)接地运动在激发中的中位数最大漂移的比较结果表明,可以获得讲故事的漂移需求3.47,4.86和5.92次 在3-,5层和8层结构中,分别接受近场地震。

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