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Simulation du comportement d’hydroliennes : modélisation de l’influence de la turbulence ambiante et des effets d’interaction ArchiMer
Carlier, Clement.
The development of marine current turbines arrays has been an active research topic for some years. However, many studies are still necessary in order to fully understand the behaviour of such arrays. One of these studies is the impact of the ambient turbulence on the behaviour of marine current turbines. Indeed recent studies have shown that ambient turbulence intensity highly modifies the behaviour of horizontal axis marine current turbines. Consequently numerical simulations have to represent the ambient turbulence or at least its effects on the performance and wake of the turbines. An other one of these studies is the assessment of interaction effect between turbines in close proximity. In order to highlight these interaction effects, experiments were...
Tipo: Text Palavras-chave: Simulation numérique; Hydrolienne; Turbulence ambiante; Synthetic-Eddy-Method; Hydroliennes en interaction; Essais expérimentaux; Sillage; Performance.; Numerical computations; Marine current turbine; Ambiant turbulence; Synthetic-Eddy- Method; Interacting turbines; Experimental trials; Wake; Performence.
Ano: 2017 URL: https://archimer.ifremer.fr/doc/00478/58926/61496.pdf
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Numerical simulation of the wake of marine current turbines with a particle method ArchiMer
Pinon, Gregory; Mycek, Paul; Germain, Gregory; Rivoalen, Elie.
This paper presents numerical computations of three bladed horizontal axis marine current turbines in a uniform free upstream current. The unsteady evolution of the turbine wake is taken into account by some three-dimensional software, developed to assess the disturbances generated in the sea. An unsteady Lagrangian method is considered for these computations using "Vortex Method": a velocity-vorticity numerical implementation of the Navier-Stokes equations. The vortex flow is discretised with particles carrying vorticity, which are advected in a Lagrangian frame. The present paper aims at presenting results on both power and thrust coefficient (C-p and C-T) predictions and wake characterisation, up to ten diameters downstream of the turbine. Moreover, two...
Tipo: Text Palavras-chave: Numerical computations; Marine current turbine; Hydrodynamic; Power and thrust coefficients; Wake.
Ano: 2012 URL: http://archimer.ifremer.fr/doc/00087/19853/17616.pdf
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