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Probabilistic stability analysis of an embankment dam considering soil spatial variability

机译:考虑土壤空间变异性的路堤大坝的概率稳定性分析

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A probabilistic stability analysis of an embankment dam taking into account soil spatial variabilities is presented in this paper. The effective cohesion and friction angle of the backfill are modelled as two anisotropic cross correlated lognormal random fields by using the Karhunen-Loeve Expansion. The probabilistic analyses are performed by a meta-modelling technique SPCE/GSA which combines the Sparse Polynomial Chaos Expansion (SPCE) and the Global Sensitivity Analysis (GSA). This technique is targeted to deal with high dimensional stochastic problems and can provide a variety of interesting results in terms of probability density function (PDF) and statistical moments of the model response, failure probability and sensitivity index of each input variable. Concerning the deterministic calculations, two models (limit equilibrium and finite difference) are created and compared in a probabilistic framework. The influences of the soil spatial variability and the cross-correlation between the shear strength parameters on the reliability analysis results are investigated.
机译:本文介绍了考虑土壤空间可变性的堤防大坝的概率稳定性分析。通过使用Karhunen-Loeve扩展,回填的有效内聚力和摩擦角度被建模为两个各向异性交叉相关的伐木序列。概率分析由Meta建模技术SPCE / GSA进行,所述SPCE / GSA结合了稀疏多项式混沌扩展(SPCE)和全局敏感性分析(GSA)。该技术旨在处理高维随机问题,并且可以在概率密度函数(PDF)方面提供各种有趣的结果,以及每个输入变量的模型响应,故障概率和灵敏度指数的统计矩。关于确定性计算,在概率框架中创建并比较了两个模型(限制平衡和有限差异)。研究了土壤空间变异性和剪切强度参数与可靠性分析结果之间的互相关的影响。

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