Publication | Closed Access
Hypersonic flutter of a curved shallow panel with aerodynamic heating
55
Citations
13
References
1993
Year
AeroacousticsEngineeringFluid MechanicsMechanical EngineeringThermoacoustic Heat EngineUnsteady FlowAeronauticsFlow OrientationHypersonic FlutterHeat TransferAerostructureGeneral EquationsAerospace EngineeringNonlinear Fluttering OscillationsMechanical SystemsAeroelasticityAerodynamicsThermal EngineeringVibration Control
The general equations describing the nonlinear fluttering oscillations of shallow, curved, heated orthotropic panels have been derived. The formulation takes into account the location of the panel on the surface of a generic hypersonic vehicle, when calculating the aerodynamic loads. It is also shown that third order piston theory produces unsteady aerodynamic loading which is in close agreement with that based upon direct solution of the Euler equations. Results, for simply supported panels, are obtained using Galerkin's method combined with direct numerical integration in time to compute stable limit cycle amplitudes. These results illustrate the sensitivity of the aeroelastic behavior to the unsteady aerodynamic assumptions, temperature, orthotropicity and flow orientation.
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