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Reliability analysis of soil liquefaction based on standard penetration test

机译:基于标准渗透试验的土壤液化可靠性分析

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摘要

A review of probabilistic and deterministic liquefaction evaluation procedures reveals that there is a need for a comprehensive approach that accounts for different sources of uncertainty in liquefaction evaluations. For the same set of input parameters, different models provide different factors of safety and/or probabilities of liquefaction. To account for the different uncertainties, including both the model and measurement uncertainties, reliability analysis is necessary. This paper presents a review and comparative study of such reliability approaches that can be used to obtain the probability of liquefaction and the corresponding factor of safety. Using a simplified deterministic Seed method, this reliability analysis has been performed. The probability of liquefaction along with the corresponding factor of safety have been determined based on a first order second moment (FOSM) method, an advanced FOSM (Hasofer-Lind) reliability method, a point estimation method (PEM) and a Monte Carlo simulation (MCS) method. A combined method that uses both FOSM and PEM is presented and found to be simple and reliable for liquefaction analysis. Based on the FOSM reliability approach, the minimum safety factor value to be adopted for soil liquefaction analysis (depending on the variability of soil resistance, shear stress parameters and acceptable risk) has been studied and a new design safety factor based on a reliability approach is proposed.
机译:对概率和确定性液化评估程序的审查表明,需要一种综合的方法来说明液化评估中不确定性的不同来源。对于同一组输入参数,不同的模型提供不同的安全性和/或液化概率因素。为了解决包括模型和测量不确定性在内的各种不确定性,必须进行可靠性分析。本文对这种可靠性方法进行了回顾和比较研究,这些方法可用于获得液化的可能性和相应的安全系数。使用简化的确定性种子方法,已执行了此可靠性分析。已根据一阶第二矩(FOSM)方法,高级FOSM(Hasofer-Lind)可靠性方法,点估计方法(PEM)和蒙特卡洛模拟( MCS)方法。提出了同时使用FOSM和PEM的组合方法,并发现该方法简单可靠,可用于液化分析。基于FOSM可靠性方法,研究了用于土壤液化分析的最小安全系数值(取决于土壤阻力的变化,剪切应力参数和可接受的风险),并基于可靠性方法设计了新的设计安全系数。建议。

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