Article ID Journal Published Year Pages File Type
1140814 Mathematics and Computers in Simulation 2006 4 Pages PDF
Abstract

A two-dimensional finite-difference lattice Boltzmann model for liquid–vapor systems is introduced and analyzed. Two different numerical schemes are used and compared in recovering equilibrium density and velocity profiles for a planar interface. We show that flux limiter techniques can be conveniently adopted to minimize spurious numerical effects and improve the numerical accuracy of the model.

Related Topics
Physical Sciences and Engineering Engineering Control and Systems Engineering
Authors
, , , ,