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NASA NTRS · 20030018104

Aerodynamic Shape Optimization Using Evolutionary Algorithms

Abstract

A method for aerodynamic shape optimization based on an evolutionary algorithm approach is presented and demonstrated. Results are presented for a number of model problems to access the effect of algorithm parameters on convergence efficiency and reliability. A transonic viscous airfoil optimization problem, both single and two-objective variations, is used as the basis for a preliminary comparison with an adjoint-gradient optimizer. The evolutionary algorithm is coupled with a transonic full potential flow solver and is used to optimize the inviscid flow about transonic wings including multi-objective and multi-discipline solutions that lead to the generation of pareto fronts. The results indicate that the evolutionary algorithm approach is easy to implement, flexible in application and extremely reliable.

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BibTeXRIS

Holst, Terry L., Pulliam, Tom. 2003-03-03. Aerodynamic Shape Optimization Using Evolutionary Algorithms. https://ntrs.nasa.gov/citations/20030018104

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