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NASA NTRS · 19910056128

Aerodynamic shape optimization using sensitivity analysis on third-order Euler equations

Abstract

Two major advancements of an aerodynamic optimization method with two design variables are described. The first is represnted by an improved flow prediction method that uses the third-order accurate discretization of the Euler equations. This method makes it possible to predict the flowfield of a perturbed shape which generates shocks and other large gradients without intermediate CFD analysis. The second advancement is the use of every surface grid point as a design variable in the aerodynamic shape optimization problem. The improved algorithm is demonstrated by optimizing the ramp shape of a scramjet-afterbody configuration for maximum axial thrust. It is concluded that the improved flow-field prediction method eliminates most of the flow analysis and a priori guessing of all possible shapes from which the optimum is to be selected.

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BibTeXRIS

Baysal, Oktay, Eleshaky, Mohamed E., Burgreen, Greg W.. 1991-01-01. Aerodynamic shape optimization using sensitivity analysis on third-order Euler equations. https://ntrs.nasa.gov/citations/19910056128

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