Physics of Fluids · 2002 · 82 citations · 9 references
EngineeringFluid MechanicsGeneralized Soft-sphere ModelSimulationComputational MechanicsSimple LiquidGss ModelRarefied FlowNumerical SimulationRheologyTransport PhenomenaModeling And SimulationMolecular KineticsCollision IntegralsBiophysicsPhysicsMonte CarloMonte Carlo SamplingNew Collision ModelNatural SciencesMonte Carlo MethodApplied PhysicsFluid-solid InteractionInterfacial StudyMultiscale Modeling
A new collision model, called the generalized soft-sphere (GSS) model, is introduced. It has the same total cross section as the generalized hard-sphere model [Phys. Fluids A 5, 738 (1993)], whereas the deflection angle is calculated by the soft-sphere scattering model [Phys. Fluids A 3, 2459 (1991)]. In virtue of a two-term formula given to fit the numerical solutions of the collision integrals for the Lennard-Jones (6-12) potential and for the Stockmayer potential, the parameters involved in the GSS model are determined explicitly that may fully reproduce the transport coefficients under these potentials. Coefficients of viscosity, self-diffusion and diffusion for both polar and nonpolar molecules given by the GSS model and experiment are in excellent agreement over a wide range of temperature from low to high.
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<i>Molecular Theory of Gases and Liquids</i>
Joseph O. Hirschfelder, C. F. Curtiss, R. Byron Bird · Physics Today · 1955 · 11.4K citations
The mathematical theory of non-uniform gases
Journal of the Franklin Institute · 1953 · 7.7K citations