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A large deformation analysis for the assessment of failure induced deformations of slopes in strain softening materials

机译:大型变形分析,用于评估应变软化材料中边坡的破坏诱发变形

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This paper presents a numerical method that can be used to evaluate the post-failure deformation of slopes and embankments. The method is based on a large deformation finite element analysis employing the updated Lagrangian formulation. It can simulate the changing geometry of slopes during failure. An extended Mohr-Coulomb constitutive model represents the strain softening behaviour of slope material. The results of a series of analyses show that the post-failure deformation of slopes is a function of the rate of strength reduction and also the stiffness of the slope material. These two factors influence the initiation of progressive failure of slopes. The validity of the method is evaluated by simulation of a test embankment failure and comparison of the predicted results with the observed record of the failure.
机译:本文提出了一种可用于评估边坡和路堤破坏后变形的数值方法。该方法基于采用更新的拉格朗日公式的大变形有限元分析。它可以模拟破坏过程中斜坡变化的几何形状。扩展的Mohr-Coulomb本构模型表示了边坡材料的应变软化行为。一系列分析的结果表明,边坡破坏后的变形是强度降低率以及边坡材料刚度的函数。这两个因素影响边坡渐进破坏的开始。该方法的有效性通过模拟测试路堤的破坏以及将预测结果与观测到的破坏记录进行比较来评估。

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