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Aerodynamic design optimization using sensitivity analysis and computational fluid dynamicsA new and efficient method is presented for aerodynamic design optimization, which is based on a computational fluid dynamics (CFD)-sensitivity analysis algorithm. The method is applied to design a scramjet-afterbody configuration for an optimized axial thrust. The Euler equations are solved for the inviscid analysis of the flow, which in turn provides the objective function and the constraints. The CFD analysis is then coupled with the optimization procedure that uses a constrained minimization method. The sensitivity coefficients, i.e. gradients of the objective function and the constraints, needed for the optimization are obtained using a quasi-analytical method rather than the traditional brute force method of finite difference approximations. During the one-dimensional search of the optimization procedure, an approximate flow analysis (predicted flow) based on a first-order Taylor series expansion is used to reduce the computational cost. Finally, the sensitivity of the optimum objective function to various design parameters, which are kept constant during the optimization, is computed to predict new optimum solutions. The flow analysis of the demonstrative example are compared with the experimental data. It is shown that the method is more efficient than the traditional methods.
Document ID
19910036882
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Baysal, Oktay
(Old Dominion Univ. Norfolk, VA, United States)
Eleshaky, Mohamed E.
(Old Dominion University Norfolk, VA, United States)
Date Acquired
August 15, 2013
Publication Date
January 1, 1991
Subject Category
Aerodynamics
Report/Patent Number
AIAA PAPER 91-0471
Accession Number
91A21505
Funding Number(s)
CONTRACT_GRANT: NAG1-1188
Distribution Limits
Public
Copyright
Other

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