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Numerical study of a Flexible Sail Plan submitted to pitching : Hysteresis phenomenon and effect of rig Adjustments

Article dans une revue avec comité de lecture
Auteur
AUGIER, Benoit
ccHAUVILLE, Frederic
ccBOT, Patrick
13094 Institut de Recherche de l'Ecole Navale [IRENAV]
AUBIN, Nicolas
DURAND, Mathieu

URI
http://hdl.handle.net/10985/8688
DOI
10.1016/j.oceaneng.2014.06.040
Date
2014
Journal
Ocean Engineering

Résumé

A numerical investigation of the dynamic Fluid Structure Interaction (FSI) of a yacht sail plan submitted to harmonic pitching is presented to analyse the system's dynamic behaviour and the effects of motion simplifications and rigging adjustments on aerodynamic forces. It is shown that the dynamic behaviour of a sail plan subject to yacht motion clearly deviates from the quasi-steady theory. The aerodynamic forces presented as a function of the instantaneous apparent wind angle show hysteresis loops. It is shown that the hysteresis phenomenon dissipates some energy and that the dissipated energy increases strongly with the pitching reduced frequency and amplitude. The effect of reducing the real pitching motion to a simpler surge motion is investigated. Results show significant discrepancies with underestimated aerodynamic forces and no more hysteresis when a surge motion is considered. However, the superposition assumption consisting in a decomposition of the surge into two translations normal and collinear to the apparent wind is verified. Then, simulations with different dock tunes and backstay loads highlight the importance of rig adjustments on the aerodynamic forces and the dynamic behaviour of a sail plan. The energy dissipated by the hysteresis is higher for looser shrouds and a tighter backstay.

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  • Institut de Recherche de l’École navale (IRENAV)

Documents liés

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

  • Wind tunnel investigation of dynamic trimming on upwind sail aerodynamics 
    Communication avec acte
    AUBIN, Nicolas; AUGIER, Benoit; SACHER, Matthieu; FLAY, Richard G.J.; ccBOT, Patrick; ccHAUVILLE, Frederic (2016)
    An experiment was performed in the Yacht Research Unit’s Twisted Flow Wind Tunnel (University of Auckland) to test the effect of dynamic trimming on three IMOCA 60 inspired mainsail models in an upwind (AWA = 60 ) unheeled ...
  • How to be the best at sail pumping? 
    Communication avec acte
    AUBIN, Nicolas; DHOME, Ulisse; AUGIER, Benoit; ccBOT, Patrick; ccHAUVILLE, Frederic (2016)
    Pumping or flicking1 is often used by sailors to get extra propulsion while sailing (subject to restrictions by the racing rules2). Common unsteady sailing situations, due to crew action (e.g. manoeuver like gybing3) or ...
  • Wind tunnel investigation of dynamic trimming on upwind sail aerodynamics 
    Article dans une revue avec comité de lecture
    AUBIN, Nicolas; AUGIER, Benoit; ccBOT, Patrick; ccHAUVILLE, Frederic; SACHER, Matthieu; FLAY, Richard G.J. (The Society of Naval Architects and Marine Engineers, 2017)
    An experiment was performed in the Yacht Research Unit’s Twisted Flow Wind Tunnel (University of Auckland) to test the effect of dynamic trimming on three IMOCA 60 inspired mainsail models in an upwind ( AW = 60°) unheeled ...
  • Inviscid approach for upwind sails aerodynamics. How far can we go? 
    Article dans une revue avec comité de lecture
    AUBIN, Nicolas; AUGIER, Benoit; ccBOT, Patrick; ccHAUVILLE, Frederic; FLOCH, Ronan (Elsevier, 2016)
    This work presents a full-scale experimental study of a yacht rig and sails in real upwind sailing conditions and a comparison with Fluid Structure Interaction (FSI) simulations with the ARAVANTI model (Finite Element ...
  • Fluid Structure Interaction of Yacht Sails in the Unsteady Regime 
    Chapitre d'ouvrage scientifique
    AUGIER, Benoit; DURAND, Mathieu; ccBOT, Patrick; ccHAUVILLE, Frederic (Editions de l'Ecole Polytechnique, 2013)
    The dynamic Fluid Structure Interaction (FSI) of yacht sails submitted to a harmonic pitching motion is numerically investigated to address both issues of aerodynamic unsteadiness and structural deformation. The model ...

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