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Seismic Responses of Two RC Buildings and One Wood Building Based on an Input Wave Field

机译:基于输入波场的2座RC建筑物和1座木结构建筑物的地震响应

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A recently proposed three-dimensional (3D) linear method for examining soil-building interactions based on an input seismic wave field is, after some improvements, applied to estimate seismic building responses in the reclaimed zone of Tokyo Bay, where ground motions include a considerable amount of surface waves, thus reconfirming the effects of the method in a different situation. A seismic wave field involves seismic waves propagating in a 3D medium. The proposed method was developed with the goal of adequately treating seismic surface waves trapped by a (several-kilometers) deep underground structure in a soil-building interaction system. Two simulations were carried out. The first simulation successfully reproduced surface, downhole, and building accelerograms that were recorded at one borehole station during two medium-sized earthquakes. In the second simulation, seismic responses of a midrise RC model building and a wood model building were favorably calculated at the other borehole station for the 1923 Kanto earthquake. The building responses also were compared with those calculated by two standard response analyses, demonstrating the superiority of the proposed method. (C) 2014 American Society of Civil Engineers.
机译:经过一些改进,最近提出了一种基于输入地震波场的三维(3D)线性方法,用于检验土与建筑物的相互作用,该方法用于估算东京湾填海区的地震建筑响应,该地震带的地震动相当大。数量的表面波,从而在不同情况下再次确认了该方法的效果。地震波场涉及在3D介质中传播的地震波。提出该方法的目的是在土壤与建筑物相互作用系统中,充分处理由(几公里)深地下结构捕获的地震地表波。进行了两个模拟。第一次模拟成功地再现了两次中型地震在一个钻孔站记录的地表,井下和建筑物加速度图。在第二次模拟中,在另一个钻孔站为1923年关东大地震计算了中层RC模型建筑物和木模型建筑物的地震响应。还将建筑响应与通过两次标准响应分析计算得到的响应进行比较,证明了所提出方法的优越性。 (C)2014年美国土木工程师学会。

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