A model for the erosion onset of a granular bed sheared by a viscous fluid
Abstract
We study theoretically the erosion threshold of a granular bed forced by a viscous fluid. We first introduce a novel model of interacting particles driven on a rough substrate. It predicts a continuous transition at some threshold forcing , beyond which the particle current grows linearly , in agreement with experiments. The stationary state is reached after a transient time which diverges near the transition as with . The model also makes quantitative testable predictions for the drainage pattern: the distribution of local current is found to be extremely broad with , spatial correlations for the current are negligible in the direction transverse to forcing, but long-range parallel to it. We explain some of these features using a scaling argument and a mean-field approximation that builds an analogy with -models. We discuss the relationship between our erosion model and models for the depinning transition of vortex lattices in dirty superconductors, where our results may also apply.
Keywords
Cite
@article{arxiv.1505.03029,
title = {A model for the erosion onset of a granular bed sheared by a viscous fluid},
author = {Le Yan and Antoine Barizien and Matthieu Wyart},
journal= {arXiv preprint arXiv:1505.03029},
year = {2016}
}
Comments
5 pages, 6 figures