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Multiple-Relaxation-Time Lattice Boltzmann Approach to Richtmyer-Meshkov Instability
Authors:CHEN Feng  XU Ai-Guo  ZHANG Guang-Cai  LI Ying-Jun
Affiliation:1.State Key Laboratory for GeoMechanics and Deep Underground Engineering,;SMCE,China University of Mining and Technology (Beijing), Beijing 100083, China;2.National Key Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics, P.O. Box 8009-26, Beijing 100088, China
Abstract:The aims of the present paper are twofold. At first, we further study the Multiple-Relaxation-Time (MRT) Lattice Boltzmann (LB) model proposed in [Europhys. Lett. 90 (2010) 54003]. We discuss the reason why the Gram-Schmidt orthogonalization procedure is not needed in the construction of transformation matrix M; point out a reason why the Kataoka-Tsutahara model [Phys. Rev. E 69 (2004) 035701(R)] is only valid in subsonic flows.The von Neumann stability analysis is performed. Secondly, we carry out a preliminary quantitative study on the Richtmyer-Meshkov instability using the proposed MRT LB model. When a shock wave travels from a light medium to a heavy one, the simulated growth rate is in qualitative agreement with the perturbation model by Zhang-Sohn. It is about half of the predicted value by the impulsive model and is closer to the experimental result. When the shock wave travels from a heavy medium to a light one, our simulation results are also consistent with physical analysis.
Keywords:lattice Boltzmann method   Richtmyer-Meshkov instability   compressible flows   multiple- relaxation-time   von Neumann stability analysis
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