Viscous-inertial transition in dense granular suspension
Soft Condensed Matter
2022-08-31 v1 Fluid Dynamics
Abstract
Granular suspensions present a transition from a Newtonian rheology in the Stokes limit to a Bagnoldian rheology when inertia is increased. A custom rheometer which can be run in a pressure or a volume-imposed mode is used to examine this transition in the dense regime close to jamming. By varying systematically the interstitial fluid, shear rate, and packing fraction in volume-imposed measurements, we show that the transition takes place at a Stokes number of 10 independent of the packing fraction. Using pressure-imposed rheometry, we investigate whether the inertial and viscous regimes can be unified as a function of a single dimensionless number based on stress additivity.
Cite
@article{arxiv.2202.10641,
title = {Viscous-inertial transition in dense granular suspension},
author = {Franco Tapia and Mie Ichihara and Olivier Pouliquen and Élisabeth Guazzelli},
journal= {arXiv preprint arXiv:2202.10641},
year = {2022}
}
Comments
5 pages, 4 figures