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NASA NTRS · 19920049055

An improved PNS scheme for predicting complex three-dimensional hypersonic flows

Abstract

Upwinding is incorporated into a numerical technique for predicting hypersonic viscous flows over lifting configurations at moderate angles of attack. A general real-gas flux-vector-splitting technique based on Van Leer's (1982) approach is employed to model upwinding, and three techniques are examined for flux-vector differencing. The three methods are evaluated by applying them to an axisymmetric configuration with a 10-deg afterbody flare. The results indicate that an oscillation-free shock front can be described by using first-order full upwinding across the embedded shock and central-differencing for the other zones. This combined approach is found to be highly convergent for the near-wall region, and its performance is examined for predicting a Mach 15 flow over a finned missile. Attention is given to the effects of gas chemistry which can significantly affect the flows over the missile configurations.

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BibTeXRIS

Bhutta, Bilal A., Lewis, Clark H.. 1992-01-01. An improved PNS scheme for predicting complex three-dimensional hypersonic flows. https://ntrs.nasa.gov/citations/19920049055

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