Effects of different constitutive models on the calculation of stress of diaphragm wall

L. Chen, J. Zhu, S. He, X. Wu, J. Yin
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引用次数: 1

Abstract

Stress of diaphragm wall is analyzed by plane finite element method for high earth-rockfill dams built on deep soil foundation.The differences of stress are studied with two kinds of different constitutive models,i.e.elastic model and nonlinear elastic model,and meanwhile,the influences of the height of dam and diaphragm wall for this two constitutive models are also compared.The results show that,the variation laws of the stress of diaphragm wall are similar for both of the models.But,the stress computed by nonlinear elastic model is much smaller than elastic model does.Under the condition of low stress,the results are similar for the two models,but have big differences for high stress.In addition,for this two models,with the increasing of height of dam and diaphragm wall,the maximal values of the stress are increasing constantly,and relative error of the maximal value of the stress as well,which have the linear relation with the height of dam and diaphragm wall.So,for the conditions of high dams or deep soil foundations,nonlinear elastic model is the right one to use because of the high stress of diaphragm wall.
不同本构模型对连续墙应力计算的影响
采用平面有限元法对建在深土基础上的高土石坝连续墙的应力进行了分析。研究了两种不同本构模型下的应力差异。同时比较了坝体高度和连续墙高度对两种本构模型的影响。结果表明,两种模型的连续墙应力变化规律相似。但是,非线性弹性模型计算的应力要比弹性模型计算的应力小得多。在低应力条件下,两种模型的计算结果基本一致,而在高应力条件下,两种模型的计算结果差异较大。另外,两种模型的应力最大值随着坝高和连续墙高度的增加而不断增大,应力最大值的相对误差也在不断增大,且与坝高和连续墙高度呈线性关系。因此,对于高坝或地基较深的地下连续墙,由于地下连续墙的应力较大,采用非线性弹性模型是比较合适的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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