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Simulating interface characteristics by using a particulate interface model of a discrete element method

机译:使用离散元素方法的微粒界面模型模拟界面特性

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This paper proposes a particulate interface model to simulate the interface by using a particulate discrete element method. Six modifications are adopted in the numerical calculations to improve the stability and accuracy. The interface model provides two failure criteria: one is the Mohr Coulomb failure criterion and the other is the Barton-Bandis shear strength criterion. To verify the proposed model, the failure envelope, the shear-displacement curve, the closure curve, and the dilation curve were analyzed and simulated. The simulations demonstrated good agreement with the theoretical curves. The influence of the particle size was also investigated; the results proved that the quantity or size of the particle did not affect the performance of the proposed model. Finally, a rock bolt pull-out problem was simulated. The results proved that the proposed interface model can reasonably predict the shear stress acting on the interface between the rock bolt and rock.
机译:本文提出了一种颗粒界面模型,通过使用颗粒离散元方法来模拟界面。在数值计算中采用了六种修改以提高稳定性和准确性。界面模型提供了两个破坏准则:一个是Mohr Coulomb破坏准则,另一个是Barton-Bandis抗剪强度准则。为了验证所提出的模型,分析并模拟了破坏包络线,剪切位移曲线,闭合曲线和膨胀曲线。仿真结果表明与理论曲线吻合良好。还研究了粒径的影响。结果证明,粒子的数量或大小不会影响所提出模型的性能。最后,模拟了锚杆拔出问题。结果证明,所提出的界面模型可以合理地预测作用在锚杆与岩石界面上的剪应力。

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