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Effects of ground motion scaling on nonlinear higher mode building response

机译:地面运动缩放对非线性高模建筑物响应的影响

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摘要

Ground motion scaling techniques are actively debated in the earthquake engineering community. Considerations such as what amplitude, over what period range and to what target spectrum are amongst the questions of practical importance. In this paper, the effect of various ground motion scaling approaches are explored using three reinforced concrete prototypical building models of 8, 12 and 20 stories designed to respond nonlinearly under a design level earthquake event in the seismically active Southern California region. Twenty-one recorded earthquake motions are selected using a probabilistic seismic hazard analysis and subsequently scaled using four different strategies. These motions are subsequently compared to spectrally compatible motions. The nonlinear response of a planar frame-idealized building is evaluated in terms of plasticity distribution, floor level acceleration and uncorrelated acceleration amplification ratio distributions; and interstory drift distributions. The most pronounced response variability observed in association with the scaling method is the extent of higher mode participation in the nonlinear demands.
机译:地震工程界一直在积极讨论地面运动缩放技术。诸如什么幅度,在什么周期范围内以及什么目标频谱之类的考虑是具有实际重要性的问题。在本文中,使用三个钢筋混凝土原型建筑模型(分别为8层,12层和20层)来探索各种地面运动缩放方法的效果,这些模型旨在在地震活跃的南加州地区在设计级地震事件下发生非线性响应。使用概率地震灾害分析选择21个记录的地震运动,然后使用四种不同的策略进行缩放。随后将这些运动与频谱兼容的运动进行比较。根据可塑性分布,地板加速度和不相关的加速度放大率分布,评估了平面框架理想建筑物的非线性响应。和层间漂移分布。与缩放方法相关的观察到的最明显的响应变化是在非线性需求中更高模式参与的程度。

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