Discontinuous decompaction of a falling sandpile
- 1 February 1996
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 53 (2) , 1923-1930
- https://doi.org/10.1103/physreve.53.1923
Abstract
We investigate experimentally and via computer simulations the fall of a two dimensional granular material in a rectangular container with friction only at lateral walls. We study the decompaction modes of the granular assembly, which is a basic question relevant to the general dynamics of a noncohesive powder. We observe during the fall the possible occurrence of successive cracks splitting the initial pile into smaller blocks as time passes. These cracks preferentially occur in the lower part of the array, resulting in an ascending decompaction wave in the bulk. We show experimentally how this effect is related to the surface roughness of the boundaries. A heuristic continuum theory is proposed that rationalizes the experimental results. Furthermore, event driven simulations, including particle rotations and friction, parallel nicely the experimental observations. In the simulations, we find strong pressure fluctuations at the boundaries correlated to the occurrence of arches. © 1996 The American Physical Society.Keywords
This publication has 25 references indexed in Scilit:
- What Is Shaking in the Sandbox?MRS Bulletin, 1994
- Density waves in granular flow: a kinetic wave approachJournal de Physique I, 1994
- Recurrent clogging and density waves in granular material flowing through a narrow pipeJournal de Physique I, 1994
- Density waves of granular flow in a pipe using lattice-gas automataPhysical Review E, 1994
- Deterministic models for traffic jamsPhysica A: Statistical Mechanics and its Applications, 1993
- Arching effect model for particle size segregationPhysical Review Letters, 1993
- Experimental Test of Time Scales in Flowing SandEurophysics Letters, 1993
- Physics of the Granular StateScience, 1992
- Pattern formation in flowing sandPhysical Review Letters, 1989
- Why the Brazil nuts are on top: Size segregation of particulate matter by shakingPhysical Review Letters, 1987