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Emergence of multi-contact interactions in contact dynamics simulations of granular shear flows

机译:颗粒剪切流接触动力学模拟中多接触相互作用的出现

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摘要

We examine the binary collision assumption of hard-sphere kinetic theory in numerical simulations of sheared granular materials. For a wide range of densities and restitution coefficients we measure collisional and non-collisional contributions to the stress tensor and find that non-collisional effects dominate at large density and small restitution coefficient. In the regimes where the non-collisional contributions disappear, we test kinetic theory predictions for the pressure without any fitting parameters and find remarkable agreement. In the regimes where the non-collisional contributions become large, we observe groups of simultaneously interacting grains and determine the average multi-contact cluster size using measurements of spatial force correlations.
机译:我们在剪切颗粒材料的数值模拟中检查了硬球动力学理论的二元碰撞假设。对于各种密度和恢复系数,我们测量了碰撞和非碰撞对应力张量的贡献,发现非碰撞效应在高密度和较小恢复系数中占主导。在非碰撞影响消失的情况下,我们在没有任何拟合参数的情况下测试了压力的动力学理论预测,并且发现了惊人的一致性。在非碰撞贡献变大的状态下,我们观察到同时相互作用的晶粒群,并使用空间力相关性的测量结果确定平均多触点簇的大小。

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