English

Extended hydrodynamics from Enskog's equation for a two-dimensional system general formalism

Statistical Mechanics 2015-06-25 v2

Abstract

Balance equations are derived from Enskog's kinetic equation for a two-dimensional system of hard disks using Grad's moment expansion method. This set of equations constitute an extended hydrodynamics for moderately dense bi-dimensional fluids. The set of independent hydrodynamic fields in the present formulations are: density, velocity, temperature {\em and also}--following Grad's original idea--the symmetric and traceless pressure tensor pijp_{ij} and the heat flux vector qk\mathbf q^{k}. An approximation scheme similar in spirit to one made by Grad in his original work is made. Once the hydrodynamics is derived it is used to discuss the nature of a simple one-dimensional heat conduction problem. It is shown that, not too far from equilibrium, the nonequilibrium pressure in this case only depends on the density, temperature and heat flux vector.

Keywords

Cite

@article{arxiv.cond-mat/0602038,
  title  = {Extended hydrodynamics from Enskog's equation for a two-dimensional system general formalism},
  author = {Hideaki Ugawa and Patricio Cordero},
  journal= {arXiv preprint arXiv:cond-mat/0602038},
  year   = {2015}
}

Comments

:9 pages, 1 figure, This will appear in J. Stat. Phys. with minor corrections and corresponds to Ref[9] of cond-mat/0507102