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Dynamic Behaviour of a Flexible Yacht Sail Plan

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

URI
http://hdl.handle.net/10985/8689
DOI
10.1016/j.oceaneng.2013.03.017
Date
2013
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 address both issues of aerodynamic unsteadiness and structural deformation. The FSI model | Vortex Lattice Method uid model and Finite Element structure model | has been validated with full-scale measurements. 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, suggesting that some energy is exchanged by the system. The area included in the hysteresis loop increases with the motion reduced frequency and amplitude. Comparison of rigid versus soft structures shows that FSI increases the energy exchanged by the system and that the oscillations of aerodynamic forces are underestimated when the structure deformation is not considered. Dynamic loads in the fore and aft rigging wires are dominated by structural and inertial effects. This FSI model and the obtained results may be useful firstly for yacht design, and also in the field of auxiliary wind assisted ship propulsion, or to investigate other marine soft structures.

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IRENAV_OE_2013_BOT.pdf
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final paper DOI : 10.1016/j.oc ...
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Documents liés

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  • 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 ...
  • 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
    AUGIER, Benoit; ccHAUVILLE, Frederic; ccBOT, Patrick; AUBIN, Nicolas; DURAND, Mathieu (Elsevier, 2014)
    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 ...
  • Experimental validation of unsteady models for fluid structure interaction: Application to yacht sails and rigs 
    Article dans une revue avec comité de lecture
    AUGIER, Benoit; ccBOT, Patrick; ccHAUVILLE, Frederic; DURAND, Mathieu (Elsevier, 2012)
    This work presents a full scale experimental study on the aero-elastic wind/sails/rig interaction in real navigation conditions with the aim to give an experimental validation of unsteady fluid structure interaction (FSI) ...
  • Experimental validation of unsteady models for wind / sails / rigging fluid structure interaction 
    Communication avec acte
    AUGIER, Benoit; ccBOT, Patrick; ccHAUVILLE, Frederic; DURAND, Mathieu (Royal Institution of Naval Architects, 2010)
    The aim of this paper is to present the work of experimental validation elements of the aero elastic and unsteady model ARAVANTI. Numerical and Experimental results comparison is made on the rigging and sails of a J80 sail ...
  • Numerical study of a flexible sail plan : effect of pitching decomposition and adjustments 
    Communication avec acte
    AUGIER, Benoit; DEPARDAY, Julien; DURAND, Mathieu; ccBOT, Patrick; ccHAUVILLE, Frederic (Ecole Navale, 2013)
    A numerical investigation of the dynamic Fluid Structure Interaction (FSI) of a yacht sail plan submitted to harmonic pitching is presented to analyse the effects of motion simplifications and rigging adjustments on ...

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