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Discrete element modelling of a soil-rock mixture used in an embankment dam

机译:堤坝中土石混合料的离散元建模

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The deformation and failure mechanism and the mechanical behavior of soil and soil-rock mixture used in an embankment dam was studied using numerical testing, based on a discrete element method (DEM). In this work, a 3D random meso-structure modelling system of soil-rock mixture is developed and used to generate a meso-structural model of soil-rock mixture. A non-overlapping combination method was used to model convex polyhedron rock blocks for the DEM numerical simulation. Based on the Voronoi cell, a method representing volume strain at particle scale is proposed. Results show that there is close contact between macro mechanical behavior and deformation localization of the sample. Rotation, occlusion, dilatation and a self-organizing force chains are remarkable phenomena of the localization band, and occur simultaneously with localization. Rock blocks influence localization characteristics and distribution of the force chains of the soil-rock mixture sample. Rotation and overcoming of the occlusion of the larger rock blocks in the localization band are more difficult than for small soil particles, which is the important reason for higher shear strength of soil-rock mixture than that of soil. The shearing process leads to anisotropy of the contact force, reaching its maximum at the start point of the plastic deformation, and then begins to decrease in the subsequent process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:基于离散元法(DEM),通过数值试验研究了堤坝中土和土石混合体的变形破坏机制和力学性能。在这项工作中,开发了土石混合体的3D随机细观结构建模系统,并用于生成土石混合体的细观结构模型。使用非重叠组合方法对凸多面体岩石块进行建模,以进行DEM数值模拟。在Voronoi细胞的基础上,提出了一种表征颗粒体积应变的方法。结果表明,宏观力学行为与样品的变形局部紧密接触。旋转,闭塞,扩张和自组织力链是定位带的显着现象,并且与定位同时发生。岩石块影响土壤-岩石混合物样品的定位特征和力链分布。与较小的土壤颗粒相比,在定位带中较大的岩石块的旋转和克服更困​​难,这是土壤-岩石混合物的抗剪强度高于土壤的重要原因。剪切过程导致接触力的各向异性,在塑性变形的起点达到最大,然后在后续过程中开始减小。 (C)2016 Elsevier Ltd.保留所有权利。

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