Influence of Modeling Approaches on the Response of a Retaining Wall

Kahil Amar, Baziz Karim
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Abstract

In this article, the evaluation of the behavior of a gravity retaining wall is analyzed by considering different modeling approaches. The influence of taking into account the spatial variability of soil parameters in modeling approaches on the response of a retaining wall, assessed through horizontal displacements behind the wall and vertical displacements at the base of the wall. The displacements were evaluated with the finite element software CESAR, developed by the Central Laboratory of Bridges and Roads in France (LCPC), and the statistical analysis of the results was performed with Microsoft Excel. The results indicated that the effects of modeling the soil as a heterogeneous case on the wall displacements were much more significant than when the soil is modeled considering the statistically homogeneous case or the analysis case of a multilayer. This influence of the modeling of the soil as being totally heterogeneous is expressed through the lower standard deviations of the displacements, and also through the narrowness of the band defined by the maximums and the minimums of the results of the displacements, with respect to the two other modeling cases. This result leads towards a gain in terms of accuracy of the results, considering the spatial variability of the soil parameters in both directions, horizontal and vertical.
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模拟方法对挡土墙响应的影响
本文通过考虑不同的建模方法,对重力式挡土墙的性能进行了分析。在建模方法中考虑土壤参数的空间变异性对挡土墙响应的影响,通过墙后的水平位移和墙底部的垂直位移来评估。采用法国桥梁和道路中心实验室(LCPC)开发的有限元软件CESAR对位移进行评估,并使用Microsoft Excel对结果进行统计分析。结果表明,将土体建模为非均质情况对墙体位移的影响比考虑统计均质情况或多层分析情况对墙体位移的影响要显著得多。与其他两种模拟情况相比,将土壤建模为完全不均匀的影响表现为位移的较低标准偏差,以及位移结果的最大值和最小值所定义的窄带。考虑到土壤参数在水平和垂直两个方向上的空间变异性,这一结果导致了结果精度的提高。
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