Probabilistic Analysis of Strip Footings Using the Subset Simulation Approach and the Influence of Spatial Variability of Two Clay Layers

IF 1.1 Q3 ENGINEERING, CIVIL Civil and Environmental Engineering Pub Date : 2022-11-07 DOI:10.2478/cee-2022-0064
Jawad K. Thajeel, Amell Jabbar Thahab
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Abstract

Abstract This article studies the probabilistic analysis at the ultimate limit state (ULS) of a strip footing resting on a purely cohesive soil composed of two layers with spatial variability of the upper or lower layer and treats the simultaneous effect of the variability of the two layers on the probability of failure Pf value using the subset simulation approach. The results are examined by comparing the Pf values obtained with the Pf value corresponding to the reference case of two homogenous clay layers. In general, the subset simulation approach is used in cases of uncertain parameters modeled by random variables. But in this paper, it is employed with uncertain parameters modeled by random fields because the spatial variability of soil properties strongly affects the behavior of geotechnical structures and causes a significant change in the variability of their responses. The soil cohesion parameter is modelled as a non-Gaussian (log-normal) anisotropic random field using a square exponential autocorrelation function by the optimal linear expansion estimation (EOLE) and the deterministic model is based on numerical simulations using the finite difference software FLAC3D.
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基于子集模拟方法的条形地基概率分析及两黏土层空间变异性的影响
摘要本文研究了位于纯粘性土壤上的条形基脚的极限状态概率分析,该土壤由两层组成,上层或下层具有空间变异性,并使用子集模拟方法处理了两层变异性对失效概率Pf值的同时影响。通过将获得的Pf值与对应于两个均质粘土层的参考情况的Pf数值进行比较来检验结果。通常,子集模拟方法用于由随机变量建模的不确定参数的情况。但在本文中,它被用于由随机场建模的不确定参数,因为土壤性质的空间变异性强烈影响岩土结构的行为,并导致其响应的变异性发生显著变化。土壤粘聚力参数通过最优线性展开估计(EOLE)使用平方指数自相关函数建模为非高斯(对数正态)各向异性随机场,确定性模型基于使用有限差分软件FLAC3D的数值模拟。
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CiteScore
2.00
自引率
58.30%
发文量
69
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