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PhD Defense : Wind tunnel experiments of a model scale wind turbine and its digital twin based on Large Eddy Simulation by Emmanuel GILLYNS (TFL)

immc
Louvain-la-Neuve
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This dissertation addresses a critical challenge in wind energy research: accurately predicting wind turbine wakes using Large Eddy Simulation (LES), which depends heavily on high-quality experimental validation data.

The work introduces a new model-scale wind turbine called TWIST (Turbine for Wind tunnel Investigation & Scaled Testing), designed and experimentally characterized in a controlled wind tunnel environment with detailed hot-wire measurements. On the numerical side, several methodological advances enable cost-efficient and physically consistent LES, including wall-modeled LES implementation, novel inflow control methods (RPS and ACTIF), and a continuous Actuator Line Model (cALM) for representing turbine aerodynamics.

These developments are integrated into an LES-based digital twin of the TWIST experiment. Comparisons with experimental measurements show that the framework captures essential near-wake flow features and reproduces observed trends under varying operating conditions, demonstrating strong predictive quality. Overall, this combined experimental-numerical approach provides a solid foundation for future investigations of wind turbine wakes and more reliable LES-based tools for wind energy research.

Membres du jury :

  • Prof. Grégoire Winckelmans  (UCLouvain)(Promoteur)
  • Prof. Renaud Ronsse  (UCLouvain) (Président)
  • Dr. Matthieu Duponcheel  (UCLouvain) (Secrétaire)
  • Prof. Jeroen van Beeck (von Karman Institute) (Co-promoteur) 
  • Prof. Joris Degroote (UGent)
  • Prof. Sandrine Aubrun (École Centrale Nantes)
  • Dr. Sophia Buckingham (ENGIE Laborelec)

 

Soutenance publique également accessible par visio-conférence via le lien (TEAMS) :

https://teams.microsoft.com/meet/35513448113251?p=o966pBIJhilmKKie2d

Meeting ID: 355 134 481 132 51

Passcode: ym76Qt68

  • Mercredi, 21 octobre 2026, 16h15
    Mercredi, 21 octobre 2026, 18h15
  • Prof. Grégoire Winckelmans