Heaping, Secondary Flows and Broken Symmetry in Flows of Elongated Granular Particles
Soft Condensed Matter
2015-02-11 v2
Abstract
In this paper we report experiments where we shear granular rods in split-bottom geometries, and find that a significant heap of height of least 40% of the filling height can form at the particle surface. We show that heaping is caused by a significant secondary flow, absent for spherical particles. Flow reversal transiently reverses the secondary flow, leading to a quick collapse and slower regeneration of the heap. We present a symmetry argument and experimental data that show that the generation of the secondary flow is driven by a misalignment of the mean particle orientation with the streamlines of the flow. This general mechanism is expected to be important in all flows of sufficiently anisometric grains.
Keywords
Cite
@article{arxiv.1411.3215,
title = {Heaping, Secondary Flows and Broken Symmetry in Flows of Elongated Granular Particles},
author = {Geert Wortel and Tamás Börzsönyi and Ellák Somfai and Sandra Wegner and Balázs Szabó and Ralf Stannarius and Martin van Hecke},
journal= {arXiv preprint arXiv:1411.3215},
year = {2015}
}
Comments
Accepted for Soft Matter