Publication | Open Access
Fan Flutter Computations Using the Harmonic Balance Method
12
Citations
3
References
2008
Year
Unknown Venue
EngineeringFluid MechanicsMechanical EngineeringRotor DynamicNavier-stokes EquationsUnsteady FlowExperimental Forward-swept FanNumerical SimulationWind-assisted PropulsionComputational Fluid DynamicsAero-propulsive InteractionsPropulsionAerospace Propulsion SystemsApplied AerodynamicsFan Flutter ComputationsAerospace EngineeringWind Turbine BladesMechanical SystemsAeroelasticityAerodynamicsFlutter CalculationsVibration Control
An experimental forward-swept fan encountered flutter at part-speed conditions during wind tunnel testing. A new propulsion aeroelasticity code, based on a computational fluid dynamics (CFD) approach, was used to model the aeroelastic behavior of this fan. This threedimensional code models the unsteady flowfield due to blade vibrations using a harmonic balance method to solve the Navier-Stokes equations. This paper describes the flutter calculations and compares the results to experimental measurements and previous results from a time-accurate propulsion aeroelasticity code.
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