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Three-Dimensional Lattice Boltzmann Model for High-Speed Compressible Flows 被引量:1

Three-Dimensional Lattice Boltzmann Model for High-Speed Compressible Flows
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摘要 A highly efficient three-dimensional (31)) Lattice Boltzmann (LB) model for high-speed compressible flows is proposed. This model is developed from the original one by Kataoka and Tsutahara [Phys. Rev. E 69 (2004) 056702]. The convection term is discretized by the Non-oscillatory, containing No free parameters and Dissipative (NND) scheme, which effectively damps oscillations at discontinuities. To be more consistent with the kinetic theory of viscosity and to further improve the numerical stability, an additional dissipation term is introduced. Model parameters are chosen in such a way that the von Neumann stability criterion is satisfied. The new model is validated by well-known benchmarks, (i) Riemann problems, including the problem with Lax shock tube and a newly designed shock tube problem with high Mach number; (ii) reaction of shock wave on droplet or bubble. Good agreements are obtained between LB results and exact ones or previously reported solutions. The model is capable of simulating flows from subsonic to supersonic and capturing jumps resulted from shock waves.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2010年第12期1121-1128,共8页 理论物理通讯(英文版)
基金 Supported by the Science Foundations of Laboratory of Computational Physical Science Foundation of China Academy of Engineering Physics under Grant Nos. 2009A0102005, 2009B0101012 National Natural Science Foundation under Grant Nos. 10775018, 11074300, and 1107521 of China
关键词 lattice Boltzmann method compressible flows Euler equations von Neumann stability analysis Boltzmann模型 可压缩流动 三维 Riemann问题 数值稳定性 晶格 动力学理论 超音速流动
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