Vortex kinematics around a submerged plate under water waves. Part II: Numerical computations
被引:10
作者:
Pinon, Gregory
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Normandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, FranceNormandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, France
Pinon, Gregory
[1
]
Perret, Gaele
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Normandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, FranceNormandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, France
Perret, Gaele
[1
]
Cao, Lei
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UTC, BP 60319 Rue Roger Couttolenc, F-60203 Compiegne, FranceNormandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, France
Cao, Lei
[2
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Poupardin, Adrien
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CEA, DAM, DIF, F-91297 Arpajon, FranceNormandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, France
Poupardin, Adrien
[3
]
Brossard, Jerome
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Normandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, FranceNormandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, France
Brossard, Jerome
[1
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Rivoalen, Elie
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Normandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, France
Normandie Univ, INSAROUEN, LOFIMS, Lab Optimisat & Fiabilite Mecan Struct EA 3828, F-76800 St Etienne Du Rouvray, FranceNormandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, France
Rivoalen, Elie
[1
,4
]
机构:
[1] Normandie Univ, UNIHAVRE, CNRS, LOMC,Lab Ondes & Milieux Complexes UMR 6295, F-76600 Le Havre, France
[2] UTC, BP 60319 Rue Roger Couttolenc, F-60203 Compiegne, France
[3] CEA, DAM, DIF, F-91297 Arpajon, France
[4] Normandie Univ, INSAROUEN, LOFIMS, Lab Optimisat & Fiabilite Mecan Struct EA 3828, F-76800 St Etienne Du Rouvray, France
This paper presents numerical computations of the flow generated by a horizontal plate immersed in a regular wave field, and associated loads acting on the plate. This numerical work is the continuation of the Poupardin et al. (2012) experimental study. This numerical study is original in the way that the vortical aspects of the flow are not neglected. Therefore, a 2D Lagrangian Vortex method is used as a numerical scheme. These methods are particularly well suited for the computation of unsteady and highly rotational flows in an open domain. The velocity field is decomposed into rotational and potential components, using the Helmholtz decomposition. The rotational part of the velocity is calculated by the Biot-Savart equation using vortex particles. The plate is modelled by a distribution of normal dipoles and the wave field is taken into account by means of a Stokes formulation, which completes the potential part of the velocity. Firstly, the numerical code is validated by means of comparison with the experimental results of Poupardin et al. (2012). In particular, the complex vortical activity and the mean flow velocity field are well reproduced and physically analysed. Secondly, forces acting on the plate are analysed on a wide range of parameters by varying the plate immersions and lengths. In the end, a new scaling is found for the lift forces acting on the plate based on the modified Stokes velocity (i.e. the bottom Stokes velocity for a water depth equals to the plate immersion) and the square of the plate length. (C) 2016 Elsevier Masson SAS. All rights reserved.