English

Ergodicity breaking dynamics of arch collapse

Soft Condensed Matter 2018-05-02 v1

Abstract

Gravity driven flows such as in hoppers and silos are susceptible to clogging due to the formation of arches at the exit whose failure is the key to re-initiation of flow. In vibrated hoppers, clog durations exhibit a broad distribution, which poses a challenge for devising efficient unclogging protocols. Using numerical simulations, we demonstrate that the dynamics of arch shapes preceding failure can be modeled as a continuous time random walk (CTRW) with a broad distribution of waiting times, which breaks ergodicity. Treating arch failure as a first passage process of this random walk, we argue that the distribution of unclogging times is determined by this waiting time distribution. We hypothesize that this is a generic feature of unclogging, and that specific characteristics, such as hopper geometry, and mechanical properties of the grains modify the waiting time distribution.

Cite

@article{arxiv.1711.00964,
  title  = {Ergodicity breaking dynamics of arch collapse},
  author = {Carl Merrigan and Sumit Kumar Birwa and Shubha Tewari and Bulbul Chakraborty},
  journal= {arXiv preprint arXiv:1711.00964},
  year   = {2018}
}

Comments

5 pages, 5 figures, +Supplementary Information

R2 v1 2026-06-22T22:34:41.430Z