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NASA NTRS · 19930061004

A multi-dimensional kinetic-based upwind solver for the Euler equations

Abstract

A multidimensional kinetic fluctuation-splitting scheme has been developed for the Euler equations. The scheme is based on an N-scheme discretization of the Boltzmann equation at the kinetic level for triangulated Cartesian meshes with a diagonal-adaptive strategy. The resulting Euler scheme is a cell-vertex fluctuation-splitting scheme where fluctuations in the conserved-variable vector Q are obtained as moments of the fluctuation in the Maxwellian velocity distribution function at the kinetic level. Encouraging preliminary results have been obtained for perfect gases on Cartesian meshes with first-order spatial accuracy. The present approach represents an improvement to the well-established dimensionally-split upwind schemes.

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BibTeXRIS

Eppard, W. M., Grossman, B.. 1993-01-01. A multi-dimensional kinetic-based upwind solver for the Euler equations. https://ntrs.nasa.gov/citations/19930061004

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