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Role of roughness on the hydrodynamic homogeneous base state of inelastic spheres (1309.2369v2)

Published 10 Sep 2013 in cond-mat.soft, cond-mat.stat-mech, and physics.flu-dyn

Abstract: A gas of inelastic rough spheres admits a spatially homogeneous base state which turns into a hydrodynamic state after a finite relaxation time. We show that this relaxation time is hardly dependent on the degree of inelasticity but increases dramatically with decreasing roughness. An accurate description of translational-rotational velocity correlations at all times is also provided. At a given inelasticity, the roughness parameter can be tuned to produce a huge distortion from the Maxwellian distribution function. The results are obtained from a Grad-like solution of the Boltzmann-Enskog equation complemented by Monte Carlo and molecular dynamics simulations.

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