A discrete Boltzmann model with symmetric velocity discretization for compressible flow

A discrete Boltzmann model with symmetric velocity discretization for compressible flow
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DOI:
10.1088/1674-1056/acea6b
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发表时间:
2023
期刊:
影响因子:
1.7
通讯作者:
Xiao Fang
Xiao Fang
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
Chuandong Lin;Xiaopeng Sun;Xianli Su;Huilin lai;Xiao Fang

文献摘要

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A discrete Boltzmann model (DBM) with symmetric velocity discretization is constructed for compressible systems with an adjustable specific heat ratio in the external force field. The proposed two-dimensional nine-velocity scheme has better spatial symmetry and numerical accuracy than the discretized velocity model in Ref. [2022 Acta Aerodyn. Sin. 40 98108] and owns higher computational efficiency than the one in Ref. [2019 Phys. Rev. E. 99 012142]. In addition, the matrix inversion method is adopted to calculate the discrete equilibrium distribution function and force term, both of which satisfy nine independent kinetic moment relations. Moreover, the DBM could be used to study a few thermodynamic nonequilibrium effects beyond the Euler equations that are recovered from the kinetic model in the hydrodynamic limit via the Chapman-Enskog expansion. Finally, the present method is verified through typical numerical simulations, including the free-falling process, Sod’s shock tube, sound wave, compressible Rayleigh–Taylor instability, and translational motion of a two-dimensional fluid system.