A BBGKY-based density gradient approximation of interparticle forces: Application for discrete Boltzmann methods
The force term accounting for interparticle interactions, with application to discrete Boltzmann simulation methods, is derived using a density gradient expansion of the BBGKY collision operator. It is shown that previous calculations, based on essentially the same mean-field-theory philosophy, do not apply the density gradient approximation in a self consistent fashion. Thus these previous models have errors in the second virial coefficient as well as coefficients associated with gradient terms in the pressure tensor. This new treatment corrects these shortcomings.
Year of publication: |
2006
|
---|---|
Authors: | Martys, Nicos S. |
Published in: |
Physica A: Statistical Mechanics and its Applications. - Elsevier, ISSN 0378-4371. - Vol. 362.2006, 1, p. 57-61
|
Publisher: |
Elsevier |
Subject: | Lattice Boltzmann | BBGKY theory | Multiphase fluids | Mean-field-theory |
Saved in:
Saved in favorites
Similar items by subject
-
Large eddy simulation of turbulent open duct flow using a lattice Boltzmann approach
Fernandino, M., (2009)
-
Investigation of Galilean invariance of multi-phase lattice Boltzmann methods
Wagner, A.J., (2006)
-
Love, Peter J., (2006)
- More ...