Column collapse of granular rods
Abstract
We find the collapse of columns of granular rods to show range of behaviors that depends on particle aspect ratio (length to diameter ) and initial pile geometry (height/radius). For all aspect ratios below 24 there exists a critical height at below which the pile acts as a solid, maintaining its initial shape, and a second critical height at above which the pile always collapses like an ordinary granular material. Separating the critical heights is a transition region in which the probability of collapse increases linearly from 0 to 1. This behavior is independent of particle length, width, or aspect ratio. When the pile does collapse, the runoff radius scales as a power-law with dimensionless height , agreeing with previous experiments on ordinary sand. For low piles the scaling is linear, with . Above a critical pile aspect ratio (pile height/radius) this switches to a square-root scaling, with .
Cite
@article{arxiv.1005.0319,
title = {Column collapse of granular rods},
author = {M. Trepanier and Scott V. Franklin},
journal= {arXiv preprint arXiv:1005.0319},
year = {2015}
}
Comments
Submitted to Physical Review E, 6/2010