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NASA NTRS · 20030014504

Options for Robust Airfoil Optimization under Uncertainty

Abstract

A robust optimization method is developed to overcome point-optimization at the sampled design points. This method combines the best features from several preliminary methods proposed by the authors and their colleagues. The robust airfoil shape optimization is a direct method for drag reduction over a given range of operating conditions and has three advantages: (1) it prevents severe degradation in the off-design performance by using a smart descent direction in each optimization iteration, (2) it uses a large number of spline control points as design variables yet the resulting airfoil shape does not need to be smoothed, and (3) it allows the user to make a tradeoff between the level of optimization and the amount of computing time consumed. For illustration purposes, the robust optimization method is used to solve a lift-constrained drag minimization problem for a two-dimensional (2-D) airfoil in Euler flow with 20 geometric design variables.

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BibTeXRIS

Padula, Sharon L., Li, Wu. 2002-01-01. Options for Robust Airfoil Optimization under Uncertainty. https://ntrs.nasa.gov/citations/20030014504

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