English

Column collapse of granular rods

Soft Condensed Matter 2015-03-17 v2

Abstract

We find the collapse of columns of granular rods to show range of behaviors that depends on particle aspect ratio (length LL to diameter dd) and initial pile geometry (height/radius). For all aspect ratios L/dL/d below 24 there exists a critical height at L/4L/4 below which the pile acts as a solid, maintaining its initial shape, and a second critical height at 3L/43L/4 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 rfr_f scales as a power-law with dimensionless height H~\tilde H, agreeing with previous experiments on ordinary sand. For low piles the scaling is linear, with rfH~1.2±0.1r_f\sim \tilde H^{1.2\pm 0.1}. Above a critical pile aspect ratio (pile height/radius) this switches to a square-root scaling, with H0.6±0.1H^{0.6\pm0.1}.

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

R2 v1 2026-06-21T15:17:54.398Z