Active dry granular flows: rheology and rigidity transitions
Abstract
The constitutive relations of a dense granular flow composed of self-propelling frictional hard particles are investigated by means of DEM numerical simulations. We show that the rheology, which relates the dynamical friction and the volume fraction to the inertial number , depends on a dimensionless number , which compares the active force to the confining pressure. Two liquid/solid transitions -- in the Maxwell rigidity sense -- are observed. As soon as the activity is turned on, the packing becomes an `active solid' with a mean number of particle contacts larger than the isostatic value. The quasi-static values of and decrease with . At a finite value of the activity , corresponding to the isostatic condition, a second `active rigidity transition' is observed beyond which the quasi-static values of the friction vanishes and the rheology becomes Newtonian. For , we provide evidence for a highly intermittent dynamics of this 'active fluid'.
Cite
@article{arxiv.1607.02648,
title = {Active dry granular flows: rheology and rigidity transitions},
author = {Anton Peshkov and Philippe Claudin and Eric Clement and Bruno Andreotti},
journal= {arXiv preprint arXiv:1607.02648},
year = {2016}
}
Comments
7 pages, 7 figures, final version, accepted for publication in Europhys. Lett