Dynamics of a grain on a sandpile model

Quartier, Andreotti, Douady, Daerr
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引用次数: 57

Abstract

The dynamics of a macroscopic grain rolling on an inclined plane composed of fixed identical grains is investigated both experimentally and theoretically. As real sand, the system exhibits an hysteretic transition between static and dynamical states: for angles smaller than straight phi(d), the roller always stops, for angles larger than straight phi(s), it spontaneously starts rolling down. But for angles between straight phi(d) and straight phi(s), it can be either at rest or in motion with a constant velocity. It is shown that the limit velocity is given by the equilibrium between gravity driving and dissipation by the shocks. Moreover, the rough plane acts as a periodic potential trap whose width and depth decrease when the angle is increased: the static angle straight phi(s) corresponds to the angle for which the trap disappears; the dynamical angle straight phi(d) to that for which the limit velocity is sufficient to escape from the trap. Finally, a continuous description of the force globally acting on the grain is proposed, which preserves this hysteretic behavior.

沙堆模型上颗粒的动力学
本文从实验和理论两方面研究了宏观晶粒在固定晶粒组成的斜面上的轧制动力学。作为真正的沙子,系统表现出静态和动态之间的滞后过渡:当角度小于直φ (d)时,滚子总是停止,当角度大于直φ (s)时,滚子自发地开始向下滚动。但是对于直线(d)和直线(s)之间的夹角,它可以是静止的,也可以是匀速运动的。结果表明,极限速度是由重力驱动和冲击耗散之间的平衡给出的。此外,粗糙平面作为周期性电位阱,其宽度和深度随着角度的增加而减小:静态角直线phi(s)对应于阱消失的角度;动态角(d)与极限速度足以脱离陷阱的角度的直线。最后,提出了作用在晶粒上的全局力的连续描述,保留了这种滞回行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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