An Efficient Nonlinear Multigrid Solver for the Simulation of Rarefied Gas Cavity Flow

Authors

  • Zhicheng Hu
  • Guanghan Li

DOI:

https://doi.org/10.4208/cicp.OA-2022-0271

Keywords:

Boltzmann equation, moment method, multigrid, rarefied gas flow, steady state.

Abstract

We study efficient simulation of steady state for multi-dimensional rarefied gas flow, which is modeled by the Boltzmann equation with BGK-type collision term. A nonlinear multigrid solver is proposed to resolve the efficiency issue by the following approaches. The unified framework of numerical regularized moment method is first adopted to derive the high-quality discretization of the underlying problem. A fast sweeping iteration is introduced to solve the derived discrete problem more efficiently than the usual time-integration scheme on a single level grid. Taking it as the smoother, the nonlinear multigrid solver is then established to significantly improve the convergence rate. The OpenMP-based parallelization is applied in the implementation to further accelerate the computation. Numerical experiments for two lid-driven cavity flows and a bottom-heated cavity flow are carried out to investigate the performance of the resulting nonlinear multigrid solver. All results show the wonderful efficiency and robustness of the solver for both first- and second-order spatial discretization.

Published

2023-09-04

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How to Cite

An Efficient Nonlinear Multigrid Solver for the Simulation of Rarefied Gas Cavity Flow. (2023). Communications in Computational Physics, 34(2), 357-391. https://doi.org/10.4208/cicp.OA-2022-0271