Kinetic representation of the unified gas-kinetic wave-particle method and beyond

Fuente: arXiv
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Main Authors: Guo, Zhaoli, Zhu, Yajun, Xu, Kun
Format: Preprint
Published: 2024
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author Guo, Zhaoli
Zhu, Yajun
Xu, Kun
author_facet Guo, Zhaoli
Zhu, Yajun
Xu, Kun
contents The unified gas-kinetic wave-particle (UGKWP) method is a hybrid method for multiscale flow simulations, in which the contributions to the whole gas evolution from deterministic hydrodynamic wave and stochastic particle transport are combined simultaneously. Originally, the UGKWP method was developed as a direct modeling approach at discrete level. In this work, we revisit the time evolution of each part of the involved simulation particles and wave molecules in UGKWP, and present the corresponding kinetic equations. The resultant kinetic system can be viewed as a collision decomposition of the original kinetic equation, which can serve as a basis for developing other kinetic methods for flows in all flow regimes.
format Preprint
id arxiv_https___arxiv_org_abs_2408_05691
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Kinetic representation of the unified gas-kinetic wave-particle method and beyond
Guo, Zhaoli
Zhu, Yajun
Xu, Kun
Computational Physics
Fluid Dynamics
The unified gas-kinetic wave-particle (UGKWP) method is a hybrid method for multiscale flow simulations, in which the contributions to the whole gas evolution from deterministic hydrodynamic wave and stochastic particle transport are combined simultaneously. Originally, the UGKWP method was developed as a direct modeling approach at discrete level. In this work, we revisit the time evolution of each part of the involved simulation particles and wave molecules in UGKWP, and present the corresponding kinetic equations. The resultant kinetic system can be viewed as a collision decomposition of the original kinetic equation, which can serve as a basis for developing other kinetic methods for flows in all flow regimes.
title Kinetic representation of the unified gas-kinetic wave-particle method and beyond
topic Computational Physics
Fluid Dynamics
url https://arxiv.org/abs/2408.05691