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Simulating velocity-dependent friction behavior of planar sliding by the particulate interface model of DEM

机译:模拟DEM微粒界面模型平面滑动的速度依赖性摩擦行为

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Planar sliding is a typical failure mode of dip slops,in which an unstable rock block slides along a weak plane,resulting in a rapid movement.Based on the previous studies,the friction coefficient of the sliding plane varies with the velocity.To reflect the velocity-dependent friction behavior,this study proposes a particulate interface model(PIM)of the particulate DEM to simulate the planar sliding behavior.To validate the performance of the proposed model,the results of a DEM simulation of the planar sliding of a rigid block are compared with the analytical dynamic solution.The results reveal that the PIM simulation is consistent with the analytical dynamic solution with or without consideration of the velocity-dependent friction law.The ordinary contact model does not accurately reflect the theoretical dynamics owing to the high resistance.With respect to the deposition distribution,the different interface models yielded the various velocities before impact,and therefore various failure patterns of the block and appearances of the deposition.The block velocity significantly influences the number of cracks.The results of the analysis reveal that the PIM can capture the planar sliding and deposition behavior of dip slope failure.
机译:平面滑动被浸废油的典型故障模式,在这种不稳定的岩石块滑动沿弱面,从而产生快速movement.Based在以前的研究中,滑动面的摩擦系数与velocity.To变化反映了速度依赖性摩擦行为,本研究提出粒状DEM的粒状接口模型(PIM)来模拟平面滑动behavior.To验证了该模型的性能,所述平面的DEM模拟滑动的刚性块的结果与分析动态相比solution.The结果表明,该PIM模拟是在有或不考虑速度相关摩擦的分析动态溶液一致law.The普通接触模型不能准确反映由于高电阻的理论动力学。随着相对于所述沉积分布,不同的接口模型产生影响之前的各种速度,并且因此各种辉块与deposition.The块速度的出现引诱图案显著影响分析的cracks.The结果的数量表明,该PIM能够捕获该平面滑动和倾角斜率失败的沉积行为。

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