Preliminary Evaluation of Nonlinear Effects on TCA FlutterThe objective of this study is to investigate the effect of nonlinear aerodynamics, especially at high angles-of-attack with leading-edge separation, on the TCA flutter properties at transonic speeds. In order to achieve that objective, flutter simulations with Navier-Stokes CFD must be performed. To this end, time-marching Navier-Stokes solutions are computed for the TCA wing/body configuration at high angles-of-attack in transonic flight regimes. The approach is to perform non-linear flutter calculations on the TCA at two angles-of-attack, the first one being a case with attached flow (a=2.8 degrees) and the second one being a high angle-of-attack case with a wing leading edge vortex (a=12.11 degrees). Comparisons of the resulting histories and frequency damping information for both angles-of-attack will evaluate the impact of high-alpha aerodynamics on flutter.
Document ID
20110022021
Acquisition Source
Langley Research Center
Document Type
Other
Authors
Arslan, Alan E. (Boeing Co. Long Beach, CA, United States)
Hartwich, Peter M. (Boeing Co. Long Beach, CA, United States)
Baker, Myles L. (Boeing Co. Long Beach, CA, United States)