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An asymptotic preserving scheme for the M1model of non-local thermal transport for two-dimensional structured and unstructured meshes

An asymptotic preserving scheme for the M1model of non-local thermal transport for two-dimensional structured and unstructured meshes

来源:Arxiv_logoArxiv
英文摘要

The M1 moment model for electronic transport is commonly used to describe non-local thermal transport effects in laser-plasma simulations. In this article, we propose a new asymptotic-preserving scheme based on the Unified Gas Kinetic Scheme (UGKS) for this model in two-dimensional space. This finite volume kinetic scheme follows the same approach as in our previous article and relies on a moment closure, at the numerical scale, of the microscopic flux of UGKS. The method is developed for both structured and unstructured meshes, and several techniques are introduced to ensure accurate fluxes in the diffusion limit. A second-order extension is also proposed. Several test cases validate the different aspects of the scheme and demonstrate its efficiency in multiscale simulations. In particular, the results demonstrate that this method accurately captures non-local thermal effects.

Jean-Luc Feugeas、Julien Mathiaud、Luc Mieussens、Thomas Vigier

10.13140/RG.2.2.22831.65441

物理学

Jean-Luc Feugeas,Julien Mathiaud,Luc Mieussens,Thomas Vigier.An asymptotic preserving scheme for the M1model of non-local thermal transport for two-dimensional structured and unstructured meshes[EB/OL].(2025-04-08)[2025-05-09].https://arxiv.org/abs/2504.06149.点此复制

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