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NASA NTRS · 20020005092

Optimization on a Network-based Parallel Computer System for Supersonic Laminar Wing Design

Abstract

A set of Computational Fluid Dynamics (CFD) routines and flow transition prediction tools are integrated into a network based parallel numerical optimization routine. Through this optimization routine, the design of a 2-D airfoil and an infinitely swept wing will be studied in order to advance the design cycle capability of supersonic laminar flow wings. The goal of advancing supersonic laminar flow wing design is achieved by wisely choosing the design variables used in the optimization routine. The design variables are represented by the theory of Fourier series and potential theory. These theories, combined with the parallel CFD flow routines and flow transition prediction tools, provide a design space for a global optimal point to be searched. Finally, the parallel optimization routine enables gradient evaluations to be performed in a fast and parallel fashion.

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BibTeXRIS

Garcia, Joseph A., Cheung, Samson, Holst, Terry L.. 1995-01-01. Optimization on a Network-based Parallel Computer System for Supersonic Laminar Wing Design. https://ntrs.nasa.gov/citations/20020005092

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