Publication | Closed Access
Discrete Boltzmann equation model for nonideal gases
629
Citations
14
References
1998
Year
EngineeringFluid MechanicsParticle MethodComputational MechanicsBody ForceRarefied FlowGas DynamicNumerical SimulationGrad 13-Moment MethodTransport PhenomenaModeling And SimulationThermodynamicsMulti-physics ModellingBoltzmann EquationPhysicsKinetic TheoryMultiphysics ProblemMultiphase FlowNon-equilibrium ProcessNatural SciencesNonideal GasesMultiscale Modeling
A discrete model based on the Boltzmann equation with a body force and a single relaxation time collision model is derived for simulations of nonideal-gas flow. The interparticle interaction is treated using a mean-field approximation. The Boltzmann equation is discretized in a way that preserves the derivation of the hydrodynamic equations from the Boltzmann equation, using either the Chapman-Enskog method or the Grad 13-moment method. The previously proposed nonideal-gas lattice Boltzmann equation model can be analyzed with rigor.
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