We study the percolation velocity, vp, of a fine spherical particle in a sheared large-particle bed under gravity using discrete element method simulations for large-to-fine particle diameter ratios, R=d/df, below and above the free-sifting threshold, Rt≈6.5. For R<Rt,vp initially increases with increasing shear rate, γ˙, as shear-driven bed rearrangement reduces fine-particle trapping but then decreases toward zero due to fine-particle excitation for γ˙d/g≳0.1. For R>Rt, vp is constant at low γ˙ but decreases toward zero at higher shear rates due to fine-particle excitation.
@article{arxiv.2310.05232,
title = {Fine particle percolation in a sheared granular bed},
author = {Song Gao and Julio M. Ottino and Richard M. Lueptow and Paul B. Umbanhowar},
journal= {arXiv preprint arXiv:2310.05232},
year = {2024}
}