4.7 Article

Automatic mesh refinement and parallel load balancing for Fokker-Planck-DSMC algorithm

Journal

JOURNAL OF COMPUTATIONAL PHYSICS
Volume 363, Issue -, Pages 140-157

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcp.2018.02.049

Keywords

DSMC; Fokker-Planck; Rarefied gas dynamics; Space-filling curves; Parallel load balancing; Automatic mesh refinement

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Recently, a parallel Fokker-Planck-DSMC algorithm for rare fied gas flow simulation in complex domains at all Knudsen numbers was developed by the authors. Fokker-Planck-DSMC (FP-DSMC) is an augmentation of the classical DSMC algorithm, which mitigates the near-continuum deficiencies in terms of computational cost of pure DSMC. At each time step, based on a local Knudsen number criterion, the discrete DSMC collision operator is dynamically switched to the Fokker-Planck operator, which is based on the integration of continuous stochastic processes in time, and has fixed computational cost per particle, rather than per collision. In this contribution, we present an extension of the previous implementation with automatic local mesh refinement and parallel load-balancing. In particular, we show how the properties of discrete approximations to space-filling curves enable an efficient implementation. Exemplary numerical studies highlight the capabilities of the new code. (c) 2018 Elsevier Inc. All rights reserved.

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