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带有可移动侧壁的颗粒填料。

Granular packings with moving side walls.

作者信息

Landry James W, Grest Gary S

机构信息

Sandia National Laboratories, Albuquerque, New Mexico 87185, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Mar;69(3 Pt 1):031303. doi: 10.1103/PhysRevE.69.031303. Epub 2004 Mar 16.

Abstract

The effects of movement of the side walls of a confined granular packing are studied by discrete element, molecular dynamics simulations. The dynamical evolution of the stress is studied as a function of wall movement both in the direction of gravity as well as opposite to it. For all wall velocities explored, the stress in the final state of the system after wall movement is fundamentally different from the original state obtained by pouring particles into the container and letting them settle under the influence of gravity. The original packing possesses a hydrostaticlike region at the top of the container which crosses over to a depth-independent stress. As the walls are moved in the direction opposite to gravity, the saturation stress first reaches a minimum value independent of the wall velocity, then increases to a steady-state value dependent on the wall velocity. After wall movement ceases and the packing reaches equilibrium, the stress profile fits the classic Janssen form for high wall velocities, while some deviations remain for low wall velocities. The wall movement greatly increases the number of particle-wall and particle-particle forces at the Coulomb criterion. Varying the wall velocity has only small effects on the particle structure of the final packing so long as the walls travel a similar distance.

摘要

通过离散元、分子动力学模拟研究了受限颗粒填料侧壁运动的影响。研究了应力的动态演化与壁面在重力方向以及与重力相反方向运动的函数关系。对于所探索的所有壁面速度,壁面运动后系统最终状态下的应力与通过将颗粒倒入容器并让它们在重力作用下沉降而获得的原始状态有根本不同。原始填料在容器顶部具有类似静水压力的区域,该区域转变为与深度无关的应力。当壁面沿与重力相反的方向移动时,饱和应力首先达到与壁面速度无关的最小值,然后增加到取决于壁面速度的稳态值。壁面运动停止且填料达到平衡后,对于高壁面速度,应力分布符合经典的扬森形式,而对于低壁面速度则仍存在一些偏差。壁面运动极大地增加了库仑准则下颗粒与壁面以及颗粒与颗粒之间的力的数量。只要壁面移动的距离相似,改变壁面速度对最终填料的颗粒结构只有很小的影响。

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