Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Sébastien Gueydon"'
Publikováno v:
Day 2 Tue, May 05, 2020.
In 2017 the authors conducted an experimental hydro-aero-dynamic (station-keeping) campaign in MARIN's Offshore Basin aimed at validating its floating offshore wind turbine simulation tools. Since wind turbine dynamics cannot be readily downscaled in
Autor:
Ebert Vlasveld, Feike Savenije, Benoît Paillard, Maël Gormand, Carlos Simao Ferreira, Sébastien Gueydon, Koert Lindenburg, Marco Caboni, William Otto, Bruce LeBlanc, Fons Huijs
Publikováno v:
Journal of Physics: Conference Series, 1104
A semi-submersible Tri-Floater has been designed to support a 6 MW vertical axis wind turbine (VAWT) with active blade pitch control. Due to the low centre of gravity and large allowable floater tilt angle, a relatively small floater can be used to s
Publikováno v:
Volume 9: Ocean Renewable Energy.
It is useful to complement model tests of a floating wind turbine with simulations mimicking the scaled-down turbine. Standard engineering tools have some short-comings to model a rotor at the very low Reynolds that Froude scaled wind and rotor’s r
Publikováno v:
Volume 8: Ocean Renewable Energy.
For the design of a floating wind turbine it is necessary to take the loading due to the wind, wave and current in equal consideration. The PHATAS computer program from ECN (Energy research Centre of the Netherlands) is a time-domain aero-elastic sim
Autor:
Sébastien Gueydon, S Weller
Publikováno v:
Journal of Offshore Mechanics and Arctic Engineering. 135
Offshore wind farms are currently located predominantly in shallow water as it is possible to cost effectively install bottom fixed offshore turbines. Where shallow water sites are not available, floating offshore turbines could be a better solution
Autor:
Sebastien Gueydon, Frances M. Judge, Michael O’Shea, Eoin Lyden, Marc Le Boulluec, Julien Caverne, Jérémy Ohana, Shinwoong Kim, Benjamin Bouscasse, Florent Thiebaut, Sandy Day, Saishuai Dai, Jimmy Murphy
Publikováno v:
Journal of Marine Science and Engineering, Vol 9, Iss 9, p 988 (2021)
This paper documents the round robin testing campaign carried out on a floating wind turbine as part of the EU H2020 MaRINET2 project. A 1/60th scale model of a 10 MW floating platform was tested in wave basins in four different locations around Euro
Externí odkaz:
https://doaj.org/article/769a86f98687499da5f391ff0f811f5e
Autor:
Sebastien Gueydon, Frances Judge, Eoin Lyden, Michael O’Shea, Florent Thiebaut, Marc Le Boulluec, Julien Caverne, Jérémy Ohana, Benjamin Bouscasse, Shinwoong Kim, Sandy Day, Saishuai Dai, Jimmy Murphy
Publikováno v:
Journal of Marine Science and Engineering, Vol 9, Iss 9, p 1030 (2021)
This paper introduces metrics developed for analysing irregular wave test results from the round robin testing campaign carried out on a floating wind turbine as part of the EU H2020 MaRINET2 project. A 1/60th scale model of a 10 MW floating platform
Externí odkaz:
https://doaj.org/article/f30f0936c0e34204be1bdd2857c59544
Autor:
Thomas Davey, Javier Sarmiento, Jérémy Ohana, Florent Thiebaut, Sylvain Haquin, Matthieu Weber, Sebastien Gueydon, Frances Judge, Eoin Lyden, Michael O’Shea, Roman Gabl, Laura-Beth Jordan, Martyn Hann, Daming Wang, Keri Collins, Daniel Conley, Deborah Greaves, David M. Ingram, Jimmy Murphy
Publikováno v:
Journal of Marine Science and Engineering, Vol 9, Iss 9, p 946 (2021)
The EU H2020 MaRINET2 project has a goal to improve the quality, robustness and accuracy of physical modelling and associated testing practices for the offshore renewable energy sector. To support this aim, a round robin scale physical modelling test
Externí odkaz:
https://doaj.org/article/a9820ed23dc54c55a9f8d0ffd2b0b3b8
Autor:
Fons Huijs, Ebert Vlasveld, Maël Gormand, Feike Savenije, Marco Caboni, Bruce LeBlanc, Carlos Simao Ferreira, Koert Lindenburg, Sébastien Gueydon, William Otto, Benoît Paillard
Publikováno v:
Journal of Physics: Conference Series; Nov2018, Vol. 1104 Issue 1, p1-1, 1p