NASA NTRS · 19930050162
An efficient procedure for cascade aeroelastic stability determination using nonlinear, time-marching aerodynamic solvers
Abstract
A numerical eigenvalue problem formulation and a practical calculation procedure for exact eigenvalues and corresponding eigenvectors are developed and applied to a nonlinear, two-dimensional, time-marching full potential solver for cascade aeroelastic stability analysis. This procedure is based on the Lanczos recursive method and it directly calculates stability information about a nonlinear steady state. It is compared to conventional approaches in the frequency and time domains developed earlier and is found to be 100-10.000 times more computationally efficient. Eigenvalue constellations and the flutter results for flow through a cascade SR5 propfan airfoil are presented.
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Mahajan, Aparajit J., Bakhle, Milind A., Dowell, Earl H.. 1993-01-01. An efficient procedure for cascade aeroelastic stability determination using nonlinear, time-marching aerodynamic solvers. https://ntrs.nasa.gov/citations/19930050162
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