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Basis Function Approximation of Transonic Aerodynamic Influence Coefficient MatrixA technique for approximating the modal aerodynamic influence coefficients matrices by using basis functions has been developed and validated. An application of the resulting approximated modal aerodynamic influence coefficients matrix for a flutter analysis in transonic speed regime has been demonstrated. This methodology can be applied to the unsteady subsonic, transonic, and supersonic aerodynamics. The method requires the unsteady aerodynamics in frequency-domain. The flutter solution can be found by the classic methods, such as rational function approximation, k, p-k, p, root-locus et cetera. The unsteady aeroelastic analysis for design optimization using unsteady transonic aerodynamic approximation is being demonstrated using the ZAERO flutter solver (ZONA Technology Incorporated, Scottsdale, Arizona). The technique presented has been shown to offer consistent flutter speed prediction on an aerostructures test wing 2 configuration with negligible loss in precision in transonic speed regime. These results may have practical significance in the analysis of aircraft aeroelastic calculation and could lead to a more efficient design optimization cycle.
Document ID
20110024032
Acquisition Source
Armstrong Flight Research Center
Document Type
Technical Memorandum (TM)
Authors
Li, Wesley W.
(NASA Dryden Flight Research Center Edwards, CA, United States)
Pak, Chan-gi
(NASA Dryden Flight Research Center Edwards, CA, United States)
Date Acquired
August 25, 2013
Publication Date
March 1, 2011
Subject Category
Aeronautics (General)
Report/Patent Number
H-3082
NASA/TM-2011-216423
DFRC-E-DAA-TN2479
Report Number: H-3082
Report Number: NASA/TM-2011-216423
Report Number: DFRC-E-DAA-TN2479
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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