Diffusivity and Weak Clustering in a Quasi 2D Granular Gas
Abstract
We present results from a detailed simulation of a quasi-2D dissipative granular gas, kept in a non-condensed steady state via vertical shaking over a rough substrate. This gas shows a weak power-law decay in the tails of its Pair Distribution Functions (PDF's), indicating fractality and therefore a tendency to form clusters over several size scales. This clustering depends monotonically on the dissipation coefficient, and disappears when the sphere-sphere collisions are conservative. Clustering is also sensitive to the packing fraction. This gas also displays the standard nonequilibrium characteristics of similar systems, including non-Maxwellian velocity distributions. The diffusion coefficients are calculated over all the conditions of the simulations, and it is found that diluted gases are more diffusive for smaller restitution coefficients.
Cite
@article{arxiv.1006.0216,
title = {Diffusivity and Weak Clustering in a Quasi 2D Granular Gas},
author = {J. A. Perera-Burgos and G. Perez-Angel and Y. Nahmad-Molinari},
journal= {arXiv preprint arXiv:1006.0216},
year = {2015}
}
Comments
14 pages, 11 figures