NASA NTRS · 19920051974
Analysis of cascades using a two dimensional Euler aeroelastic solver
Abstract
A two-dimensional unsteady aerodynamic Euler solver based on a flux differencing scheme is being developed to analyze oscillating cascades. The cascades can have subsonic, transonic, or supersonic flow with either subsonic or supersonic axial velocity. The aerodynamic solver is coupled with a typical section structural model for each blade of the cascade. Flutter analysis methods both in time and frequency domains are then implemented into the resulting aeroelastic solver. Methods that reduce computational time for calculating the unsteady aerodynamic coefficients, namely the influence coefficient method and the pulse response method, are also implemented and validated. The present solver showed good correlation with published results for all the flow regimes. It is shown that grid coarsening improved the accuracy of the predictions. A representative flutter calculation showed that both the frequency domain and time domain methods are implemented correctly into the aeroelastic solver.
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Reddy, T. S. R., Bakhle, Milind A., Huff, Dennis L., Swafford, Timothy W.. 1992-01-01. Analysis of cascades using a two dimensional Euler aeroelastic solver. https://ntrs.nasa.gov/citations/19920051974
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