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Model uncertainty of SPT-based method for evaluation of seismic soil liquefaction potential using multi-gene genetic programming

机译:基于SPT的多基因遗传规划方法在地震土液化潜力评估中的模型不确定性

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In this paper, the model uncertainty of the developed standard penetration test (SPT)-based model for evaluation of liquefaction potential of soil is estimated within the framework of the first-order reliability method (FORM). First, an empirical model to determine the cyclic resistance ratio (CRR) of the soil is developed, based on the post-liquefaction SPT data using an evolutionary artificial intelligence technique, multi-gene genetic programming (MGGP). This developed resistance model along with an existing cyclic stress ratio (CSR) model forms a limit state function for reliability-based approach for liquefaction triggering analysis. The uncertainty of the developed limit state model is represented by a lognormal random variable, in terms of its mean and the coefficient of variation, estimated through an extensive reliability analysis following a trial and error approach using Bayesian mapping functions calibrated with a high quality post-liquefaction case history database. A deterministic model with a mapping function relating the probability of liquefaction (P-L) and the factor of safety against liquefaction (F-s) is also developed for use in absence of parameter uncertainties. Two examples are presented to compare the present MGGP-based reliability method with the available regression-based reliability method. (C) 2015 The Japanese Geotechnical Society. Production and hosting by Elsevier B.V. All rights reserved.
机译:在本文中,在一级可靠性方法(FORM)的框架内估算了基于已开发的基于标准渗透试验(SPT)的土壤液化潜力评估模型的模型不确定性。首先,基于液化后SPT数据,使用进化人工智能技术,多基因遗传规划(MGGP),开发了确定土壤循环阻力比(CRR)的经验模型。这种已开发的电阻模型与现有的循环应力比(CSR)模型一起形成了基于状态的液化触发分析方法的极限状态函数。已开发的极限状态模型的不确定性由对数正态随机变量表示(就其均值和变异系数而言),该变量通过使用贝叶斯映射函数进行了反复试验的方法进行了广泛的可靠性分析,并通过高质量的贝叶斯映射函数进行了校准,从而进行了估计液化案例历史数据库。还开发了具有映射函数的确定性模型,该函数与液化的可能性(P-L)和抗液化的安全系数(F-s)相关,以在没有参数不确定性的情况下使用。给出了两个示例,以将当前基于MGGP的可靠性方法与可用的基于回归的可靠性方法进行比较。 (C)2015年日本岩土学会。 Elsevier B.V制作和托管。保留所有权利。

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