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Probabilistic seismic analysis for liquefiable embankment through multi-fidelity codes approach

机译:通过多保真码方法液化路堤概率的地震分析

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The study focuses on both the effects of soil foundation liquefaction on the induced damage of an embankment and on the generation of a probabilistic seismic demand model that relates few specific characteristics of seismic hazard at a site with the liquefaction-induced settlement. To this aim, several non-linear dynamic Finite Element (FE) analyses were performed. However, given the costly evaluation of the numerical model simulations for a large number of earthquake records, a surrogate model based on multi-fidelity approach is used to represent the output of the expensive FE model. In this approach, the training database is composed by computational lowfidelity data together with limited high-fidelity one. Thus, the proposed methodology is used to generate the curves describing the annual rate of exceeding different values of damage levels. A comparison with the FE reference results suggests that the accuracy of the prediction of the proposed surrogate model is comparable to those from direct numerical FE analysis. Findings also illustrate clearly the importance and the advantages of an adequate definition of the input parameters to build the surrogate model.
机译:该研究重点介绍土壤基础液化对堤防诱导损伤的影响,并对液化诱导沉降有少量抗震危害的特定特征的产生。为此目的,进行几种非线性动态有限元(Fe)分析。然而,考虑到大量地震记录对数值模拟模拟的昂贵评估,基于多保真方法的代理模型用于表示昂贵的FE模型的输出。在这种方法中,训练数据库由计算的低保护数据与有限的高保真程度一起组成。因此,所提出的方法用于生成描述年度超过不同损伤程度值的速率的曲线。与Fe参考结果的比较表明,所提出的替代模型的预测的准确性与来自直接数值Fe分析的预测相当。发现还显然说明了建立代理模型的输入参数的足够定义的重要性和优点。

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