NASA NTRS · 20000024921
Flutter and Forced Response Analyses of Cascades using a Two-Dimensional Linearized Euler Solver
Abstract
Flutter and forced response analyses for a cascade of blades in subsonic and transonic flow is presented. The structural model for each blade is a typical section with bending and torsion degrees of freedom. The unsteady aerodynamic forces due to bending and torsion motions. and due to a vortical gust disturbance are obtained by solving unsteady linearized Euler equations. The unsteady linearized equations are obtained by linearizing the unsteady nonlinear equations about the steady flow. The predicted unsteady aerodynamic forces include the effect of steady aerodynamic loading due to airfoil shape, thickness and angle of attack. The aeroelastic equations are solved in the frequency domain by coupling the un- steady aerodynamic forces to the aeroelastic solver MISER. The present unsteady aerodynamic solver showed good correlation with published results for both flutter and forced response predictions. Further improvements are required to use the unsteady aerodynamic solver in a design cycle.
Keep this discovery
Explore connections, maps & timelines
Reddy, T. S. R., Srivastava, R., Mehmed, O.. 1999-11-01. Flutter and Forced Response Analyses of Cascades using a Two-Dimensional Linearized Euler Solver. https://ntrs.nasa.gov/citations/20000024921
Cite the original work for its findings. Save a collection to share your selection of sources.