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Numerical investigations on unsteady vortical flows and separation-induced transition over a cycloidal rotor at low Reynolds number

Article dans une revue avec comité de lecture
Auteur
SHI, Lei
531216 Laboratoire de Mécanique des Fluides de Lille – Kampé de Fériet - UMR 9014 [LMFL]
BAYEUL-LAINE, Annie-Claude
531216 Laboratoire de Mécanique des Fluides de Lille – Kampé de Fériet - UMR 9014 [LMFL]
COUTIER-DELGOSHA, Olivier
47147 Virginia Tech [Blacksburg]
531216 Laboratoire de Mécanique des Fluides de Lille – Kampé de Fériet - UMR 9014 [LMFL]

URI
http://hdl.handle.net/10985/22618
DOI
10.1016/j.enconman.2022.115812
Date
2022-08
Journal
Energy Conversion and Management

Résumé

The unsteady vortical flows and laminar-turbulence transition over a 2-bladed cycloidal rotor are investigated numerically at two advance coefficients, with special emphasis on the influence of two turbulence models, namely the original SST k-ω model and SST γ-Reθt transition model. The numerical results are compared with the existing numerical and experimental data, in terms of the global performance and detailed internal flow structures. The primary results show that increasing the advanced coefficient can’t change the transition location of the performance for the single blade, but the magnitudes of these variables. Then, combined the forces acting on two blades and the blade loadings, the difference of the vertical force and propulsive force of the rotating system and single blade are clarified clearly for two turbulence models. Finally, at advancing side, the transition and its evolution on a single blade is elaborated. It shows that the SST γ-Reθt transition model is superior in predicting the overall performance, and is highly subjected to the disturbances, characterized by the large-scale vortex structures and massive flow separation, compared with SST k-ω model. Simultaneously, it has the capability to capture the transition process, from growing waves of the laminar boundary layer induced by the roll-up vortices to the fully generation of the separation bubble. It believes that this work can deep the understandings of underlying flow physics inside the cycloidal roto at low Reynolds number.

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  • Laboratoire de Mécanique des Fluides de Lille (LMFL)

Documents liés

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

  • Analysis of flow-induced performance change of cycloidal rotors: Influence of pitching kinematic and chord-to-radius ratio 
    Article dans une revue avec comité de lecture
    SHI, Lei; BAYEUL-LAINÉ, Annie-Claude; COUTIER-DELGOSHA, Olivier (Elsevier ltd, 2022-08)
    As a new type of the propulsive devices, cycloidal rotor has been attracting more attention recently. The present work concentrates on the analysis of the performance and internal flow field of a two-bladed cycloidal ...
  • Investigations on vortex evolution and wake dynamics of bio-inspired pitching hydrofoils 
    Article dans une revue avec comité de lecture
    WANG, Yefang; SHI, Lei; ccBAYEUL-LAINÉ, Annie-Claude; ccCOUTIER-DELGOSHA, Olivier (SAGE Publications, 2022-11)
    Recently, lots of oscillating targets inspired from motions of some insects and birds have been applied extensively to many engineering applications. The aim of this work is to reveal the performance and detailed flow ...
  • Parametrical study on separation-induced transition and vortex dynamics of a reversed pitching airfoil 
    Article dans une revue avec comité de lecture
    SHI, Lei; WANG, Yefang; ZHANG, Desheng; ccBAYEUL-LAINÉ, Annie-Claude; ccCOUTIER-DELGOSHA, Olivier (Elsevier BV, 2022-11)
    The pitching airfoils, applied to the vertical axis turbines and propellers, are critical to extract more energy from the environment. At retreating side, when the airfoil blunt leading edge becomes the trailing edge, the ...
  • Numerical investigations on transitional flows around forward and reversed hydrofoils 
    Article dans une revue avec comité de lecture
    SHI, Lei; WANG, Yefang; BAYEUL-LAINE, Annie-Claude; COUTIER-DELGOSHA, Olivier (Elsevier BV, 2021)
    The laminar-turbulence transition phenomenon widely exists on the surface of many energy equipment, which is deserved to be studied because of the complex mechanics and some induced undesirable consequences. The goal of ...
  • Analysis of the Unsteady Flow Around a Hydrofoil at Various Incidences 
    Chapitre d'ouvrage scientifique
    SHI, Lei; BAYEUL-LAINÉ, Annie-Claude; COUTIER-DELGOSHA, Olivier (Springer, 2020)
    The oscillating hydrofoils used in underwater propulsion devices often experience large variations of the flow incidence, which favors cavitation at large angle of attack, and therefore a severe degradation of the performance, ...

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