Publication | Closed Access
Experimental and Computational Investigation of the Knoller-Betz Effect
402
Citations
22
References
1998
Year
AeroacousticsEngineeringFluid MechanicsExperimental TechnologyComputational MechanicsUnsteady FlowMechanicsKnoller-betz EffectNumerical SimulationExperimental MechanicVortex DynamicHydrodynamic StabilityPlunging AirfoilPhysicsExperimental AnalysisNonlinear Wake ModelPropulsionPlunging FoilsAerospace EngineeringNatural SciencesCondensed Matter PhysicsApplied PhysicsAerodynamicsVortex Induced VibrationMultiscale Modeling
The ability of a sinusoidally plunging airfoil to produce thrust, known as the Knoller-Betz or Katzmayr effect, is investigated experimentally and numerically. Water-tunnel experiments are performed providing flow visualization and laser Doppler velocimetry data of the unsteady wakes formed by the plunging foils. Vortical structures and time-averaged velocity profiles in the wake are compared with numerical computations from a previously developed inviscid, unsteady panel code that utilizes a nonlinear wake model
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