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Probabilistic Liquefaction Triggering Based on the Cone Penetration Test

机译:基于锥形渗透测试的概率液化触发

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摘要

Performance-based earthquake engineering requires a probabilistic treatment of potential failure modes in order to accurately quantify the overall stability of the system. This paper is a summary of the application portions of the probabilistic liquefaction triggering correlations proposed recently proposed by Moss and co-workers. To enable probabilistic treatment of liquefaction triggering, the variables comprising the seismic load and the liquefaction resistance were treated as inherently uncertain. Supporting data from an extensive Cone Penetration Test (CPT)-based liquefaction case history database were used to develop a probabilistic correlation. The methods used to measure the uncertainty of the load and resistance variables, how the interactions of these variables were treated using Bayesian updating, and how reliability analysis was applied to produce curves of equal probability of liquefaction are presented. The normalization for effective overburden stress, the magnitude correlated duration weighting factor, and the non-linear shear mass participation factor used are also discussed.
机译:基于性能的地震工程需要对潜在故障模式进行概率处理,以便准确地量化系统的整体稳定性。本文总结了Moss及其同事最近提出的概率液化触发相关性的应用部分。为了能够对液化触发的概率进行处理,将包括地震荷载和液化阻力在内的变量视为固有不确定性。来自广泛的基于锥形渗透测试(CPT)的液化案例历史数据库的支持数据用于建立概率相关性。提出了用于测量载荷和阻力变量不确定性的方法,如何使用贝叶斯更新法处理这些变量的相互作用,以及如何进行可靠性分析以产生等液化概率曲线。还讨论了有效覆盖应力的归一化,幅度相关的持续时间加权因子以及所使用的非线性剪切质量参与因子。

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