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PGA-PGV/Vs considered as a stress-strain proxy for predicting nonlinear soil response

机译:PGA-PGV / Vs被认为是预测非线性土壤响应的应力应变代理

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In this paper, a relationship proxy for predicting the nonlinear soil responses is proposed by mean of monitoring the variation of shear wave velocity along vertical array. The recent seismic interferometry by deconvolution method is applied to extract the shear-wave velocity profile throughout the soil column. Using synthetic modeling, this method is shown to be a relevant and an efficient solution for assessing the Vs profile along a vertical seismic array. The ratio between particle velocity and the equivalent linear shear-wave velocity, v*/Vs*, is computed between two successive sensors, and is assumed to be a proxy for strain. The particle acceleration, a*, versus v*/Vs* is proposed as a stress-strain representation for nonlinear analysis of soil response. Using centrifuge tests, v*/Vs* is shown to be a good representation for soil strain, and analysis of the variation of v*/Vs* as a function of a* allows the nonlinear soil response to be determined in an earthquake situation. These relationship proxies are finally applied to the Japanese K-NET and KiK-net in-situ data, where Vs(30) is used instead of Vs* for practical purposes related to site classification recommendations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过监测剪切波速度沿垂直方向的变化,提出了一种预测非线性土体响应的关系代理。应用反褶积法的最新地震干涉法提取了整个土柱的剪切波速度分布。使用综合建模,该方法被证明是评估沿垂直地震阵列的Vs剖面的相关且有效的解决方案。在两个连续的传感器之间计算了粒子速度与等效线性剪切波速度v * / Vs *之间的比率,并假定该比率是应变的代理。提出将粒子加速度a *相对于v * / Vs *作为应力应变表示法,用于土壤响应的非线性分析。使用离心测试,v * / Vs *可以很好地表示土壤应变,对v * / Vs *随a *的变化进行分析可以确定地震情况下的非线性土壤响应。这些关系代理最终应用于日本K-NET和KiK-net原位数据,其中出于与站点分类建议相关的实际目的,使用Vs(30)代替Vs *。 (C)2016 Elsevier Ltd.保留所有权利。

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