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Turbulent flow around circular arcs

Article dans une revue avec comité de lecture
Auteur
SOUPPEZ, Jean-Baptiste R.G.
26904 Aston University [Birmingham]
60450 School of Engineering [Edinburgh]
ccBOT, Patrick
13094 Institut de Recherche de l'Ecole Navale [IRENAV]
VIOLA, Ignazio Maria
61277 The University of Edinburgh

URI
http://hdl.handle.net/10985/21577
DOI
10.1063/5.0075875
Date
2022
Journal
Physics of Fluids

Résumé

The flow around a circular arc is governed by the effect of the sharp leading edge and the arc’s curvature. There is a range of incidences where a leading-edge separation bubble (LESB) is formed on the convex side of the arc, and the reattached boundary layer separates further downstream. Akin to foils and cylinders, for increasing values of the Reynolds number, the boundary layer turns from laminar to turbulent resulting in a step change in the forces, here termed force crisis. This phenomenon is characterized experimentally for an arc with a camber-to-chord ratio of 0.22 and for a range of the Reynolds number from 53 530 to 218 000. Forces are measured both in a towing tank and in a water tunnel, and particle image velocimetry is undertaken in the water tunnel. In stark contrast to cylinders, where the force crisis is associated with the laminar-to-turbulent transition of the boundary layer, here, it is found to be associated with the suppressed relaminarization of the boundary layer. In fact, the LESB is always turbulent at the tested conditions, and relaminarization occurs up to a combination of critical angles of attack and critical Reynolds numbers. The critical angle of attack varies linearly with the Reynolds number. These results may contribute to the design of thin cambered wings, sails, and blades at a transitional Reynolds number such as the wings of micro aerial vehicles, swept wings in subsonic flight, turbomachinery blades, and the sails of autonomous sailing vessels

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IRENAV_POF_2022_BOT.pdf
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Fin d'embargo:
2022-07-01
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  • Institut de Recherche de l’École navale (IRENAV)

Documents liés

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

  • On the Effect of the Leading-Edge Separation Bubble on the Aerodynamics of Spinnakers 
    Communication avec acte
    SOUPPEZ, Jean-Baptiste R.G.; ccBOT, Patrick; VIOLA, Ignazio Maria (RINA NZ, 2021-03)
    The spinnaker is the most powerful and one of the most used sails both in racing and cruising - yet its complex aerodynamics governed by flow separation is still not fully understood. While the flow around a spinnaker is ...
  • Wind-tunnel pressure measurements on model-scale rigid downwind sails 
    Communication avec acte
    ccBOT, Patrick; VIOLA, Ignazio Maria; FLAY, Richard G.J.; BRETT, Jean-Sébastien (Ecole Navale, 2013)
    This paper describes an experiment that was carried out in the Twisted Flow Wind Tunnel at The University of Auckland to measure a detailed set of pressure distributions on a rigid 1/15th scale model of a modern asymmetric ...
  • Wind-tunnel pressure measurements on model-scale rigid downwind sails 
    Article dans une revue avec comité de lecture
    ccBOT, Patrick; VIOLA, Ignazio Maria; FLAY, Richard G.J.; BRETT, Jean-Sébastien (Elsevier, 2014)
    This paper describes an experiment that was carried out in the Twisted Flow Wind Tunnel at The University of Auckland to measure a detailed set of pressure distributions on a rigid 1/15th scale model of a modern asymmetric ...
  • On the Uncertainty of CFD in Sail Aerodynamics 
    Article dans une revue avec comité de lecture
    VIOLA, Ignazio Maria; ccBOT, Patrick; RIOTTE, Matthieu (Wiley, 2013)
    A verification and validation procedure for yacht sail aerodynamics is presented. Guidelines and an example of application are provided. The grid uncertainty for the aerodynamic lift, drag and pressure distributions for ...
  • Discontinuity of lift on a hydrofoil in reversed flow for tidal turbine Application 
    Article dans une revue avec comité de lecture
    MARCHAND, Jean-Baptiste; ccASTOLFI, Jacques Andre; ccBOT, Patrick (Elsevier, 2017)
    This work presents an experimental investigation of a hydrofoil in reversed flow configuration in the context of marine current turbine development. Experiments consist in hydrodynamic force measurements and PIV flow ...

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