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Erschienen in: Experiments in Fluids 1/2010

01.07.2010 | Research Article

Measurement of parallel blade–vortex interaction at low Reynolds numbers

verfasst von: David Rival, Roland Manejev, Cam Tropea

Erschienen in: Experiments in Fluids | Ausgabe 1/2010

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Abstract

In this study parallel blade–vortex interaction for a Schmidt-propeller configuration has been examined using particle image velocimetry (PIV). This tandem configuration consists of a leading airfoil (forefoil), used to generate a vortical wake of leading-edge vortices (LEVs) and trailing-edge vortices (TEVs) through a pitching or plunging motion, and a trailing airfoil (hindfoil), held fixed with a specified angle of attack and vertical spacing in its wake. The hindfoil incidence (loading) and not the vertical spacing to the incoming vortical wake has been found to dictate the nature of the interaction (inviscid vs. viscous). For cases where the vortex–blade offset is small and the hindfoil is loaded, vortex distortion and vortex-induced separations are observed. By tracking the circulation of the LEV and TEV, it has been found that the vortices are strengthened for the tandem arrangement and in certain cases dissipate quicker in the wake when interacting with the hindfoil. Time-averaged forces obtained using a standard control-volume analysis are then obtained and used to evaluate these vortex-interaction cases. A subsequent analysis of the varying pressure distribution over the suction side of the hindfoil is performed by integrating the Navier–Stokes equations through the velocity field. This allows for a direct comparison of the vortex-induced loading for the various configurations.

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Metadaten
Titel
Measurement of parallel blade–vortex interaction at low Reynolds numbers
verfasst von
David Rival
Roland Manejev
Cam Tropea
Publikationsdatum
01.07.2010
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 1/2010
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-009-0796-1

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