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Extension of three-dimensional discontinuous deformation analysis to frictional-cohesive materials

机译:将三维非连续变形分析扩展到摩擦粘结材料

摘要

This paper extends three-dimensional discontinuous deformation analysis (3-D DDA) to model the frictional-cohesive failure behavior of geotechnical materials and structures. Firstly, a new contact detection scheme was developed to successfully identify the dominant sub-contacts and areas of the joints between arbitrarily shaped polyhedral blocks. Secondly, a modified joint contact model subjected to the Mohr-Coulomb failure criteria based on distributed cohesion instead of concentrated cohesion, was proposed to ensure the accuracy of the simulation by 3-D DDA. Thirdly, the extended 3-D DDA was verified by three examples, including joint contact detection, critical stability and failure mode of a system of polyhedral blocks. Finally, the complete failure process involving large displacement and rotation of multiple interaction blocks is exhibited dynamically. Overall, these examples exhibit that the extended 3-D DDA is now capable of accurately modeling the failure behavior of frictional-cohesive materials and structures, so as to optimize the material and structure stabilization or protection design.
机译:本文扩展了三维非连续变形分析(3-D DDA),以对岩土材料和结构的摩擦内聚破坏行为进行建模。首先,开发了一种新的接触检测方案,以成功地识别任意形状的多面体块之间的主要子接触和关节区域。其次,提出了一种基于分布内聚力而不是集中内聚力的服从Mohr-Coulomb破坏准则的改进接头接触模型,以确保3-D DDA仿真的准确性。第三,通过三个例子验证了扩展的3-D DDA,包括联合接触检测,临界稳定性和多面体系统的失效模式。最后,动态展示了涉及多个交互块的大位移和旋转的完整故障过程。总体而言,这些示例表明,扩展的3-D DDA现在能够准确地模拟摩擦粘结材料和结构的失效行为,从而优化材料和结构的稳定性或防护设计。

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