Three-Dimensional Discontinuous Galerkin Method for the Second-Order Boltzmann-Curtiss Constitutive Model in Continuum-Rarefied Gas Flows

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초록

A multi-dimensional mixed-type discontinuous Galerkin (DG) method for the second-order Boltzmann-Curtiss constitutive model is presented for continuum-rarefied gas flow problems. An explicit modal DG scheme on unstructured triangular/tetrahedral meshes is adopted for solving the conservation laws in conjunction with the second-order constitutive relations arising from the high degree of thermal non-equilibrium. The performance of the new DG scheme is assessed by solving several test cases such as the subsonic/supersonic/hypersonic gas flows past 2D cylinder, 3D sphere, and 3D flat plate in continuum-rarefied regimes. Finally, multi-dimensional velocity slip models are studied within the framework of DG numerical method.

키워드

Discontinuous Galerkin; Second-order Boltzmann-Curtiss; Continuum-rarefied gas flows
제목
Three-Dimensional Discontinuous Galerkin Method for the Second-Order Boltzmann-Curtiss Constitutive Model in Continuum-Rarefied Gas Flows
저자
Singh, S.; Myong, R. S.
DOI
10.1063/1.5119553
발행일
2019-08-05
유형
Proceedings Paper
저널명
AIP Conference Proceedings
권
2132