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NASA NTRS ยท 19850038719

Artificial dissipation models for the Euler equations

Abstract

Various artificial dissipation models which are used with central difference algorithms for the Euler equations are analyzed for their effect on accuracy, stability and convergence rates. In particular, linear and nonlinear models are investigated using an implicit approximate factorization code (ARC2D) for transonic airfoils. Fully implicit application of the dissipation models is shown to improve robustness and convergence rates. The treatment of dissipation models at boundaries will be examined. It will be shown that accurate, error free solutions with sharp shocks can be obtained using a central difference algorithm coupled with an appropriate nonlinear artificial dissipation model.

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BibTeXRIS

Pulliam, T. H.. 1985-01-01. Artificial dissipation models for the Euler equations. https://ntrs.nasa.gov/citations/19850038719

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