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颗粒流的摩擦力与振荡运动。

Friction and the oscillatory motion of granular flows.

作者信息

Staron L

机构信息

CNRS-Université Pierre et Marie Curie Paris 6, UMR 7190, Institut Jean Le Rond d'Alembert, F-75005 Paris, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Oct;86(4 Pt 1):041307. doi: 10.1103/PhysRevE.86.041307. Epub 2012 Oct 17.

Abstract

This contribution reports on numerical simulations of two-dimensional granular flows on erodible beds. The broad aim is to investigate whether simple flows of model granular matter exhibit spontaneous oscillatory motion in generic flow conditions, and in this case, whether the frictional properties of the contacts between grains may affect the existence or the characteristics of this oscillatory motion. The analysis of different series of simulations shows that the flow develops an oscillatory motion with a well-defined frequency which increases like the inverse of the velocity's square root. We show that the oscillation is essentially a surface phenomenon. The amplitude of the oscillation is higher for lower volume fractions and can thus be related to the flow velocity and grains' friction properties. The study of the influence of the periodic geometry of the simulation cell shows no significant effect. These results are discussed in relation to sonic sands.

摘要

本论文报道了在易蚀床面上二维颗粒流的数值模拟结果。主要目的是研究在一般流动条件下,模型颗粒物质的简单流动是否会呈现出自发振荡运动,若存在这种情况,颗粒间接触的摩擦特性是否会影响这种振荡运动的存在或特性。对不同系列模拟的分析表明,流动会产生具有明确频率的振荡运动,该频率随速度平方根的倒数增加。我们表明,这种振荡本质上是一种表面现象。对于较低的体积分数,振荡幅度更高,因此可以与流速和颗粒的摩擦特性相关联。模拟单元周期性几何形状影响的研究表明没有显著影响。结合声波砂对这些结果进行了讨论。

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