Swimming in Granular Media
Statistical Mechanics
2015-05-14 v1 Soft Condensed Matter
Abstract
We study a simple model of periodic contraction and extension of large intruders in a granular bed to understand the mechanism for swimming in an otherwise solid media. Using an event-driven simulation, we find optimal conditions that idealized swimmers must use to critically fluidize a sand bed so that it is rigid enough to support a load when needed, but fluid enough to permit motion with minimal resistance. Swimmers - or other intruders - that agitate the bed too rapidly produce large voids that prevent traction from being achieved, while swimmers that move too slowly cannot travel before the bed re-solidifies around them i.e., the swimmers locally probe the fundamental time-scale in a granular packing.
Cite
@article{arxiv.0911.1265,
title = {Swimming in Granular Media},
author = {Takashi Shimada and Dirk Kadau and Troy Shinbrot and Hans J. Herrmann},
journal= {arXiv preprint arXiv:0911.1265},
year = {2015}
}