Scinovex
article Open AccessTop 1% cited

Granular flow down an inclined plane: Bagnold scaling and rheology

Leonardo E. SilbertDeniz ErtaşGary S. GrestThomas C. HalseyDov LevineSteven J. Plimpton

Abstract

We have performed a systematic, large-scale simulation study of granular media in two and three dimensions, investigating the rheology of cohesionless granular particles in inclined plane geometries, i.e., chute flows. We find that over a wide range of parameter space of interaction coefficients and inclination angles, a steady-state flow regime exists in which the energy input from gravity balances that dissipated from friction and inelastic collisions. In this regime, the bulk packing fraction (away from the top free surface and the bottom plate boundary) remains constant as a function of depth z, of the pile. The velocity profile in the direction of flow vx(z) scales with height of the pile H, according to vx(z) proportional to H(alpha), with alpha=1.52+/-0.05. However, the behavior of the normal stresses indicates that existing simple theories of granular flow do not capture all of the features evidenced in the simulations.

Granular flow and fluidized bedsLandslides and related hazardsSoil and Unsaturated FlowInclined planePileScalingPhysicsGranular materialAtomic packing factorFlow (mathematics)RheologyPlane (geometry)Mechanics
Citations
992
FWCI
20.12
field-weighted impact
References
36
Percentile
100%
vs. same field & year
Citations per year
References
Fast Parallel Algorithms for Short-Range Molecular Dynamics
Journal of Computational Physics · 1995 · 43,820 citations
Scaling laws in granular flows down rough inclined planes
Physics of Fluids · 1999 · 706 citations
Experiments on a gravity-free dispersion of large solid spheres in a Newtonian fluid under shear
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1954 · 2,666 citations
Elastic Spheres in Contact Under Varying Oblique Forces
Journal of Applied Mechanics · 1953 · 2,626 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.