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Journal of Offshore Mechanics and Arctic Engineering-transactions of The Asme | 2014

Aero-Hydro-Elastic Simulation of a Semi-Submersible Floating Wind Turbine

Maxime Philippe; Aurélien Babarit; Pierre Ferrant

This paper presents an aero-hydro-elastic model of a semi-submersible floating wind turbine. A specific attention is drawn to hydrodynamic modeling options and their effect onthe dynamic response of the platform. The NREL 5MW reference wind turbine mounted on the historical concept of semi-submersible platform Dutch tri-floater is considered. Aspecific hydrodynamic model of loads on a semi-submersible platform is used within the wind turbine design code FAST from NREL. This hydrodynamic model includes nonlinearhydrostatic and Froude-Krylov forces, diffraction/radiation forces obtained from linear potential theory, and Morison forces to take into account viscous effects on the bracesand damping plates. The effect of the different hydrodynamic modeling options is investigated. As one could have expected, it is found that the effect of viscous drag on braces, and nonlinear Froude-Krylov loads, becomes larger with increasing wave height. Their effect remains of small order. Simulations also are run with directional waves, it is found that wave directionality induces larger transverse motions.


ASME 33rd International Conference on Ocean, Offshore and Artic Engineering | 2014

Comparison of fully non linear and weakly nonlinear potential flow solvers for the study of wave energy converters undergoing large amplitude of motions

Lucas Letournel; Jeffrey C. Harris; Emmanuel Dombre; Aurélien Babarit; Pierre Ferrant; Guillaume Ducrozet; Michel Benoit


Archive | 2017

WEC3: Wave Energy Converter Code Comparison Project: Preprint

Adrien Combourieu; Michael Lawson; Aurélien Babarit; Kelley Ruehl; André Roy; Ronan Costello; Pauline Laporte Weywada; Helen Bailey


Proc. of the Marine Energy Technology Symposium (METS2017) | 2017

Technology performance level (TPL) assessment

Bull Diana; Ronan Costello; Aurélien Babarit; Kim Nielsen; Ben Kennedy; Bittencourt-Ferreira Claudio; Roberts Jesse; Weber Jochem


Proc. of the 2nd International Conference on Renewable Energies Offshore | 2016

Systems Engineering applied to the development of a Wave Energy Plant

Aurélien Babarit; Bull Diana; Weber Jochem; Ronan Costello; Robert Malins; Dykes Katherine; Roberts Jesse; Kim Nielsen; Bittencourt-Ferreira Claudio


Actes des 15èmes Journées de l'Hydrodynamique | 2016

Développement d’un couplage hydrodynamique et aérodynamique instationnaire pour l’étude des éoliennes flottantes à axe vertical

Leroy Vincent; Jean-Christophe Gilloteaux; Maxime Philippe; Aurélien Babarit; Pierre Ferrant


12e Colloque national en calcul des structures | 2015

Dynamique d’un tube hyper-elastique déformable ancré en milieu marin

Benjamin Gendron; Aurélien Babarit; Ambroise Wattez; Pierre Ferrant


11th European Wave and Tidal Energy Conference (EWTEC2015) | 2015

Introducing Second Order Low Frequency Loads in the Open-Source Boundary Element Method Code Nemoh

Maxime Philippe; Adrien Combourieu; Christophe Peyrard; Fabien Robaux; Gérard Delhommeau; Aurélien Babarit


11th European Wave and Tidal Energy Conference (EWTEC2015) | 2015

WEC3: wave energy converters modelling code comparison project

Adrien Combourieu; Michael Lawson; Aurélien Babarit; Kelley Ruehl; André Roy; Ronan Costello; Pauline Laporte-Weywada; Helen Bailey


Archive | 2014

MODELLING OF WAVE ATTENUATION INDUCED BY MODELLING OF WAVE ATTENUATION INDUCED BY MODELLING OF WAVE ATTENUATION INDUCED BY MODELLING OF WAVE ATTENUATION INDUCED BY MULTI

Vasiliki Stratigaki; Peter Troch; David Forehand; Jens Peter Kofoed; Matthew Folley; Aurélien Babarit; Michel Benoit

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Maxime Philippe

École centrale de Nantes

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Pierre Ferrant

École centrale de Nantes

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Michel Benoit

École des ponts ParisTech

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Kelley Ruehl

Sandia National Laboratories

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Michael Lawson

National Renewable Energy Laboratory

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Jeffrey C. Harris

University of Rhode Island

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