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A multi‐energy‐level lattice Boltzmann model for the compressible Navier–Stokes equations
41
Citations
32
References
2007
Year
Compressible FlowEngineeringPhysicsIncompressible FlowFluid MechanicsNumerical SimulationTurbulenceLattice Boltzmann EquationCircular CylinderAerodynamicsSimulationCompressible Navier–stokes EquationsNavier-stokes EquationsMultiscale HydrodynamicsShock CompressionBoltzmann Transport Equation
Abstract In this paper, we propose a new lattice Boltzmann model for the compressible Navier–Stokes equations. The new model is based on a three‐energy‐level and three‐speed lattice Boltzmann equation by using a method of higher moments of the equilibrium distribution functions. As the 25‐bit model, we obtained the equilibrium distribution functions and the compressible Navier–Stokes equations with the second accuracy of the truncation errors. The numerical examples show that the model can be used to simulate the shock waves, contact discontinuities and supersonic flows around circular cylinder. The numerical results are compared with those obtained by traditional method. Copyright © 2007 John Wiley & Sons, Ltd.
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