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Statistical analysis of the additional amplification in deep basins relative to the 1D approach

机译:与一维方法相比,深盆附加放大作用的统计分析

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摘要

To bridge the 1D to the multidimensional site response analysis, aggravation factor at a certain surface point is defined as the ratio of its response spectrum computed using a multidimensional model to that computed using its local 1D model. Zhu et al. (2017a) quantified.the aggravation factor.in 2D shallow basins. As an extension to Zhu et al. (2017a), this paper aims to quantify, in a statistical sense, the aggravation factor in 2D deep basins using the numerical approach. We thus configure a total of 32 heterogeneous deep basin formations (half-width less than approximately five times basin depth) constructed based mainly on real 1D soil profiles. Nine seismic motions recorded on rock site are taken as vertically propagating SH waves. Both 1D and 2D ground motions of each basin model are simulated and averaged over the nine input motions. 2D ground motions in these deep basins are found to be significantly aggravated relative to 1D results within the period range from 0.1 s to Th across the whole basin width by a factor of which the 16th and 84th percentile are 1.3 and 1.8 respectively (This the fundamental period of the soil column at the deepest portion of a basin).
机译:为了将一维与多维站点响应分析联系起来,将某个表面点处的加重因子定义为使用多维模型计算的响应谱与使用其本地一维模型计算的响应谱之比。朱等。 (2017a)量化了2D浅盆地中的加剧因子。作为对朱等人的扩展。 (2017a),本文旨在从统计学意义上使用数值方法量化二维深海盆地的加剧因子。因此,我们总共配置了32个主要基于真实一维土壤剖面的异质深盆地地层(半宽度小于盆地深度的大约五倍)。记录在岩石现场的九次地震运动被视为垂直传播的SH波。每个流域模型的1D和2D地面运动都经过模拟,并在9个输入运动中求平均。在从0.1 s到Th的整个盆地宽度上的1D结果中,这些深盆地的2D地面运动相对于1D结果显着加剧,其第16和84个百分位数分别为1.3和1.8(这是基础盆地最深处的土柱期)。

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