Jean-Luc Pélerin

Jean-Luc Pélerin

Concept / R&D Engineer at SBM Offshore

Nice et périphérie
454 abonnés 453 relations

À propos

Concept / R&D engineer specialized in CFD with more than 13 years experience in the offshore Oil & Gas industry.
Fascinated by flows and their science.

Activité

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Expérience

  • Graphique SBM Offshore

    Concept Engineer

    SBM Offshore

    - aujourd’hui 4 ans 8 mois

    Monaco

    Studies subcontracting: specification, tender, follow-up
    Technology and methodology development

  • Graphique Brunel

    R&D Engineer / Consultant

    Brunel

    - 1 an 9 mois

    Monaco

    Support to projects with high added value studies
    R&D studies: Innovative mooring for wind floaters, Electromagnetic calculations

  • Graphique SBM Offshore

    R&D Engineer

    SBM Offshore

    - 9 ans 2 mois

    Monaco

    CFD studies for projects and R&D:
    - Hydrodynamics: current coefficients, sloshing, motion assessment, roll damping, hull optimization
    - Flow assurance: complex multiphase, pressure drop and erosion
    - Heat transfer: complex calculations including phase change
    - Advanced modeling: optimization (ODE and adjoint), Fluid/Structure interaction

    Management of the CFD team:
    - Manage junior engineers and interns
    - Monitor state of the art, write QA procedures, qualify…

    CFD studies for projects and R&D:
    - Hydrodynamics: current coefficients, sloshing, motion assessment, roll damping, hull optimization
    - Flow assurance: complex multiphase, pressure drop and erosion
    - Heat transfer: complex calculations including phase change
    - Advanced modeling: optimization (ODE and adjoint), Fluid/Structure interaction

    Management of the CFD team:
    - Manage junior engineers and interns
    - Monitor state of the art, write QA procedures, qualify subcontractors
    - Interface with disciplines and projects

    Specification and follow-up of external studies
    Methodology and model development
    Management of experimental campaigns

  • ANSYS, Inc.

    ANSYS, Inc.

    2 ans 6 mois

    • Graphique ANSYS, Inc.

      Software developer

      ANSYS, Inc.

      - 2 ans

      Région de Lyon, France

      Development on the ANSYS standalone rigid body solver.
      Development of custom applications inside the Workbench environment.
      Support for the CFX solver.

    • Graphique ANSYS, Inc.

      Internship

      ANSYS, Inc.

      - 6 mois

      Région de Lyon, France

      Simulation of Abdominal Aortic Aneurysms to assess rupture risks. Following this study an article has been published: "Fluid/structure interaction applied to the simulation of Abdominal Aortic Aneurysms".

Formation

Publications

  • Bilge Keel Loads and Hull Induced Pressures: Experimental Results and CFD Validation

    ASME

    This paper present results obtained in an experiment with a
    rotating cylinder to which a single bilge keel was fitted. Forced
    oscillations were performed leading to a KC range between 1
    and 16. The loads acting on the bilge keel were measured as
    well as the vortex induced hull pressures in the vicinity of the
    bilge keel.
    Computational Fluid Dynamic simulations were conducted
    with a 2D representation of the experiment. Good correlation in
    the bilge keel loads and vortex…

    This paper present results obtained in an experiment with a
    rotating cylinder to which a single bilge keel was fitted. Forced
    oscillations were performed leading to a KC range between 1
    and 16. The loads acting on the bilge keel were measured as
    well as the vortex induced hull pressures in the vicinity of the
    bilge keel.
    Computational Fluid Dynamic simulations were conducted
    with a 2D representation of the experiment. Good correlation in
    the bilge keel loads and vortex induced pressures is obtained.

    Other authors
    See publication
  • Fluid/Structure Interaction applied to the simulation of Abdominal Aortic Aneurysms

    IEEE

    Development of a methodology for the simulation of Abdominal Aortic Aneurysms in order to assess aortic wall stress.
    Fluid (blood), structure (aortic wall) and their complex interaction is simulated.
    Tools used are CFX and ANSYS.

    Other authors
    • Carine Kulik
    • Cemil Goksu
    • Jean-Louis Coatrieux
    • Michel Rochette

Langues

  • English

    Capacité professionnelle complète

  • French

    Bilingue ou langue natale

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