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Experimental analysis of trailing edge hydroelastic coupling on a hydrofoil

Article dans une revue avec comité de lecture
Auteur
ccFRANCOIS, Paul
13094 Institut de Recherche de l'Ecole Navale [IRENAV]
ccASTOLFI, Jacques Andre
13094 Institut de Recherche de l'Ecole Navale [IRENAV]
ccAMANDOLESE, Xavier
12568 Laboratoire de Mécanique des Structures et des Systèmes Couplés [LMSSC]

URI
http://hdl.handle.net/10985/24787
DOI
10.1016/j.jfluidstructs.2024.104078
Date
2024-01-23
Journal
Journal of Fluids and Structures

Résumé

This paper explores the conditions for hydroelastic trailing edge vibrations generating tonal noise on a NACA0015 aluminium hydrofoil clamped in a hydrodynamic tunnel. Tests were performed for Reynolds numbers, ranging from 200 000 up to 1 200 000 and various angles of attack, from 0 up to 10°. A laser vibrometer was used to characterize the hydrofoil vibratory response. Time Resolved Particle Image Velocimetry (TR-PIV) was used to scrutinize the origin of the hydrodynamic excitation mechanism. Hydroelastic trailing edge vibrations of significant amplitude were observed at moderate angles of attack 4 ≤ α ≤ 8.5°, for Reynolds number such that the pressure side boundary layer transition was located close to the trailing edge, with a frequency signature allowing a lock-in with the hydrofoil trailing edge structural mode. Two passive solutions were tested to mitigate this hydroelastic flow-induced vibration: a truncated hydrofoil and a triggered one. The truncated configuration slightly impacts the vibration while triggering the pressure side boundary layer transition ahead of the trailing edge eliminates the trailing edge vibrations with negligible impact on the hydrofoil hydrodynamics performances.

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Fin d'embargo:
2024-08-01
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  • Institut de Recherche de l’École navale (IRENAV)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Tonal Noise Control Versus Performances on NACA0015 Hydrofoil 
    Article dans une revue avec comité de lecture
    ccFRANCOIS, Paul; LÈRE, Basile; ccAMANDOLESE, Xavier; ccASTOLFI, Jacques Andre (The Society of Naval Architects and Marine Engineers, 2023-06-26)
    Strong correlation between boundary layer excitation and hydrofoil eigenmode occurs for specific angles of attack and Reynolds numbers, resulting in strong tonal noise emissions under certain circumstances. This study aims ...
  • Experimental analysis of hydrofoil hydroelastic trailing edge vibrations 
    Communication avec acte
    FRANCOIS, Paul; ccASTOLFI, Jacques Andre; AMANDOLESE, Xavier (Association Française de Mécanique (AFM), 2022)
    This paper explores the conditions for hydro-elastic trailing edge vibrations on a NACA0015 aluminium hydrofoil clamped in a hydrodynamic tunnel. Test were performed for Reynolds numbers ranging from 2×10⁵ up to 9×10⁵ and ...
  • Computational and experimental investigation of flow over a transient pitching hydrofoil 
    Article dans une revue avec comité de lecture
    DUCOIN, Antoine; ccASTOLFI, Jacques Andre; DENISET, François; SIGRIST, Jean-François (Elsevier, 2009)
    The present study is developed within the framework of marine structure design operating in transient regimes. It deals with an experimental and numerical investigation of the time–space distribution of the wall-pressure ...
  • An experimental analysis of fluid structure interaction on a flexible hydrofoil in various flow regimes including cavitating flow 
    Article dans une revue avec comité de lecture
    DUCOIN, Antoine; ccASTOLFI, Jacques Andre; SIGRIST, Jean-François (Elsevier, 2012)
    The structural response of a rectangular cantilevered flexible hydrofoil submitted to various flow regimes is analyzed through an original experiment carried out in a hydrodynamic tunnel at a Reynolds number of 0.75 × 10 ...
  • Effect of the laminar separation bubble induced transition on the hydrodynamic performance of a hydrofoil 
    Article dans une revue avec comité de lecture
    DELAFIN, Pierre-Luc; DENISET, François; ccASTOLFI, Jacques Andre (Elsevier, 2014)
    The present study deals with the effect of the laminar separation bubble (LSB) induced transition on the lift, drag and moment coefficients of a hydrofoil. A 2D numerical study, based on the SST γ –Reθ transition model of ...

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