Scinovex
articleTop 1% cited

A theory for the rapid flow of identical, smooth, nearly elastic, spherical particles

Journal of Fluid Mechanics · 1983 · Vol. 130 · pp. 187–202
James T. JenkinsStuart B. Savage

Abstract

We focus attention on an idealized granular material comprised of identical, smooth, imperfectly elastic, spherical particles which is flowing at such a density and is being deformed at such a rate that particles interact only through binary collisions with their neighbours. Using general forms of the probability distribution functions for the velocity of a single particle and for the likelihood of binary collisions, we derive local expressions for the balance of mass, linear momentum and fluctuation kinetic energy, and integral expressions for the stress, energy flux and energy dissipation that appear in them. We next introduce simple, physically plausible, forms for the probability densities which contain as parameters the mean density, the mean velocity and the mean specific kinetic energy of the velocity fluctuations. This allows us to carry out the integrations for the stress, energy flux and energy dissipation and to express these in terms of the mean fields. Finally, we determine the behaviour of these fields as solutions to the balance laws. As an illustration of this we consider the shear flow maintained between two parallel horizontal plates in relative motion.

Landslides and related hazardsGranular flow and fluidized bedsNonlocal and gradient elasticity in micro/nano structuresPhysicsDissipationKinetic energyMechanicsClassical mechanicsEnergy fluxMomentum (technical analysis)Shear flowBinary numberFlow (mathematics)
Citations
1,365
FWCI
105.06
field-weighted impact
References
10
Percentile
100%
vs. same field & year
Citations per year
References
Equation of State for Nonattracting Rigid Spheres
The Journal of Chemical Physics · 1969 · 5,205 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
Citation Network

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

A theory for the rapid flow of identical, smooth, nearly elastic, spherical particles · Scinovex