Orientational correlation and velocity distributions in uniform shear flow of a dilute granular gas
Abstract
Using particle simulations of the uniform shear flow of a rough dilute granular gas, we show that the translational and rotational velocities are strongly correlated in direction, but there is no orientational correlation-induced singularity at perfectly smooth () and rough () limits for elastic collisions (); both the translational and rotational velocity distribution functions remain close to a Gaussian for these two limiting cases. Away from these two limits, the orientational as well as spatial velocity correlations are responsible for the emergence of non-Gaussian high velocity tails. The tails of both distribution functions follow stretched exponentials, with the exponents depending on normal () and tangential () restitution coefficients.
Keywords
Cite
@article{arxiv.0802.0056,
title = {Orientational correlation and velocity distributions in uniform shear flow of a dilute granular gas},
author = {Bishakdatta Gayen and Meheboob Alam},
journal= {arXiv preprint arXiv:0802.0056},
year = {2009}
}
Comments
Physical Review Letters (accepted)