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Simulations of collision times in gravity driven granular flow

John J. Drozd, Colin Denniston

cond-mat.softarXiv:cond-mat/0609330

Abstract

We use simulations to investigate collision time distributions as one approaches the static limit of steady-state flow of dry granular matter. The collision times fall in a power-law distribution with an exponent dictated by whether the grains are ordered or disordered. Remarkably, the exponents have almost no dependence on dimension. We are also able to resolve a disagreement between simulation and experiments on the exponent of the collision time power-law distribution.

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