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Nonlinear shear mass participation factor (r_d) for cyclic shear stress ratio evaluation

机译:非线性剪力参与因子(r_d)用于循环剪应力比评估

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摘要

Most methods for assessment of in situ seismic soil liquefaction potential require evaluation of the earthquake-induced cyclic shear stress ratio (CSR). Estimates of the in situ CSR can be developed directly, using dynamic response analyses, but it is common in 'simplified' analysis methods to develop estimates of the in situ CSR using empirical relationships. Unfortunately, the most widely used existing empirical relationships are based on limited response analyses and do not take full advantage of current knowledge of factors affecting this response problem. As a result, they are both biased and unnecessarily imprecise. This paper presents the results of a relatively comprehensive suite of site response studies (2153 site response analyses), performed using carefully selected suites of site conditions and input time histories, to provide an improved basis for development of estimates of in situ CSR using the r_d-approach. The resulting empirical correlations, developed using the Bayesian updating method, provide a much improved basis for simplified empirical evaluation of CSR as a function of (1) depth; (2) earthquake magnitude; (3) intensity of shaking; and (4) site stiffness.
机译:评估原位地震土液化潜力的大多数方法都需要评估地震引起的循环剪切应力比(CSR)。可以使用动态响应分析直接开发原位CSR的估计值,但是在“简化”分析方法中,通常使用经验关系来开发原位CSR的估计值。不幸的是,使用最广泛的现有经验关系是基于有限的响应分析,并且没有充分利用影响该响应问题的因素的当前知识。结果,它们既有偏差又不必要地不精确。本文介绍了一个相对全面的现场响应研究套件(2153个现场响应分析)的结果,这些结果是使用精心选择的一组现场条件和输入时间历史记录进行的,为使用r_d进行现场CSR估算的开发提供了改进的基础。 -方法。使用贝叶斯更新方法开发的结果经验相关性,为简化根据(1)深度的CSR的经验评估提供了很大的改进基础。 (2)地震烈度; (3)摇晃强度; (4)部位刚度。

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