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Optimising hydrofoils using automated multi-fidelity surrogate models

Article dans une revue avec comité de lecture
Auteur
ccPEHLIVAN SOLAK, Hayriye
1088633 Laboratoire de recherche en Hydrodynamique, Énergétique et Environnement Atmosphérique [LHEEA]
ccWACKERS, Jeroen
1088633 Laboratoire de recherche en Hydrodynamique, Énergétique et Environnement Atmosphérique [LHEEA]
PELLEGRINI, Riccardo
579920 Institute of Marine Engineering - CNR [CNR-INM]
SERANI, Andrea
579920 Institute of Marine Engineering - CNR [CNR-INM]
DIEZ, Matteo
579920 Institute of Marine Engineering - CNR [CNR-INM]
PERALI, Paolo
301846 École Nationale Supérieure de Techniques Avancées Bretagne [ENSTA Bretagne]
SACHER, Matthieu
301846 École Nationale Supérieure de Techniques Avancées Bretagne [ENSTA Bretagne]
LEROUX, Jean-Baptiste
301846 École Nationale Supérieure de Techniques Avancées Bretagne [ENSTA Bretagne]
AUGIER, Benoît
300022 Institut Français de Recherche pour l'Exploitation de la Mer [IFREMER]
ccHAUVILLE, Frederic
13094 Institut de Recherche de l'Ecole Navale [IRENAV]
ccBOT, Patrick
13094 Institut de Recherche de l'Ecole Navale [IRENAV]

URI
http://hdl.handle.net/10985/25941
DOI
10.1080/17445302.2024.2422518
Données de la recherche liées à cette publication
http://doi.org/10.6084/m9.figshare.24938484
Date
2024-11-14
Journal
Ships and Offshore Structures

Résumé

Lifting hydrofoils are gaining importance, since they drastically reduce the wetted surface area of a ship, thus decreasing resistance. To attain efficient hydrofoils, the geometries can be obtained from an automated optimisation process. However, hydrofoil simulations are computationally demanding, since fine meshes are needed to accurately capture the pressure field and the boundary layer on the hydrofoil. Simulation-based optimisation can therefore be very expensive. To speed up the fully automated hydrofoil optimisation procedure, we propose a multi-fidelity framework which takes advantage of both an efficient low-fidelity potential flow solver dedicated to hydrofoils and a high-fidelity RANS solver enhanced with adaptive grid refinement and dedicated foil-aligned overset meshes, to attain high accuracy with a limited computational budget. Both solvers are shown to be reliable for automatic simulation, and remarkable correlation between potential-flow and RANS results is obtained. Two different multi-fidelity frameworks are compared for a realistic hydrofoil: only RANS based and potential-RANS based. According to the optimisation results, the drag is able to be reduced by 17% and 8% in these frameworks, within a realistic time frame. Thus, industrial optimisation of hydrofoils appears possible. Finally, critical areas of future improvement regarding the robustness and efficiency of the optimisation procedure are discussed in this study.

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IRENAV_JSOS_2024_BOT.pdf
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Format:
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Fin d'embargo:
2025-05-15
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  • Performance prediction of a hydrofoil near the free surface using low (BEM) and high (RANS) fidelity methods 
    Article dans une revue avec comité de lecture
    PERALI, Paolo; SACHER, Matthieu; LEROUX, Jean-Baptiste; ccWACKERS, Jeroen; AUGIER, Benoît; ccHAUVILLE, Frederic; ccBOT, Patrick (Elsevier BV, 2024-08-08)
    As a first step toward a multi-fidelity optimization tool for hydrofoils, the present work assesses the ability of the in-house code PUFFIn to be used as a “low-fidelity” solver within the multi-fidelity framework. The ...
  • Free-Surface Effects on Two-Dimensional Hydrofoils by RANS-VOF Simulations 
    Article dans une revue avec comité de lecture
    ccPERNOD, Laetitia; SACHER, Matthieu; ccWACKERS, Jeroen; AUGIER, Benoit; ccBOT, Patrick (The Society of Naval Architects and Marine Engineers, 2023-01-27)
    Foiling yachts and crafts are both very sensitive to the flying height in terms of stability and performance, raising the scientific issue of the influence of the free-surface when the foil is at low submergence. This work ...
  • 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 ...
  • 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 ...
  • Boundary Element Method Analysis of 3D Effects and Free-Surface Proximity on Hydrofoil Lift and Drag Coefficients in Varied Operating Conditions 
    Article dans une revue avec comité de lecture
    ccNICOLAS, Hugo; PERALI, Paolo; ccSACHER, Matthieu; ccBOT, Patrick (The Society of Naval Architects and Marine Engineers, 2023-12-04)
    The use of hydrofoils to enhance ship performance raises the scientific issue of free-surface proximity, which is important to consider during the design stage, to feed velocity prediction programs, for instance. Typically, ...

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