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Recovery of the Navier-Stokes equations using a lattice-gas Boltzmann method
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1992
Year
Numerical AnalysisQuantum Lattice SystemEngineeringFluid MechanicsNavier-stokes EquationsComputational MechanicsConvection TermRarefied FlowNumerical SimulationThermodynamicsLattice Boltzmann-equation ModelPhysicsIncompressible FlowSemi-implicit MethodMultiphase FlowNon-equilibrium ProcessNumerical Method For Partial Differential EquationBoltzmann Transport EquationNatural SciencesNon-galilean InvarianceMultiscale Modeling
It is known that the Frisch-Hasslacher-Pomeau lattice-gas automaton model and related models possess some rather unphysical effects. These are (1) a non-Galilean invariance caused by a density-dependent coefficient in the convection term, and (2) a velocity-dependent equation of state. In this paper, we show that both of these effects can be eliminated exactly in a lattice Boltzmann-equation model.
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