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首页> 外文期刊>International Journal of Mining and Geo-Engineering >Application of cohesive crack model to simulation of rocks mechanical behavior in grain-based distinct element model
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Application of cohesive crack model to simulation of rocks mechanical behavior in grain-based distinct element model

机译:粘性裂缝模型在谷物基不同元素模型中岩石力学行为仿真的应用

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This paper aims to study the mechanical behavior of rocks subjected to different mechanical loading conditions using the Cohesive Crack Model (CCM) and Grain-Based Model (GBM) in the Distinct Element Method (DEM) simulations. In the GBM-DEM, the Voronoi tessellation scheme is used, and intact materials are simulated as a collection of structural units (particles/blocks) bonded together at their contact areas. Implementing the CCM revealed a nonlinear behavior of grain interfaces under various loading modes. Numerical simulation of a tension-compression and direct shear test was conducted to verify that the CCM was implemented correctly. The simulated numerical curves were consistent to the results of theoretical calculations, indicating that the model incorporated into GBM-DEM could simulate more realistically similar to the micro-cracking mechanisms. Finally, CCM was used to simulate the uniaxial and biaxial compression tests under the Universal Distinct Element Code (UDEC). The results of the models were in a good agreement with the relevant responses of the rock under different loading conditions, verifying the applicability of the CCM.
机译:本文旨在研究在不同元素法(DEM)模拟中使用粘性裂纹模型(CCM)和基于谷物的模型(GBM)进行不同机械负载条件的岩石的力学行为。在GBM-DEM中,使用voronoi曲面细胞内方案,并将完整的材料被模拟作为在其接触区域聚集在一起的结构单元(颗粒/块)的集合。实施CCM在各种装载模式下揭示了晶粒界面的非线性行为。进行了张力 - 压缩和直接剪切试验的数值模拟,以验证CCM是否正确实施。模拟数值曲线与理论计算的结果一致,表明将其结合到GBM-DEM中的模型可以模拟更现实地类似于微裂纹机构。最后,CCM用于在通用不同元素代码(UDEC)下模拟单轴和双轴压缩测试。模型的结果与岩石的相关反应在不同的负载条件下,验证了CCM的适用性。

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