AbstractThe objective of this work is to study the effect of the rotor thrust on the motions of a semisubmersible floating foundation for Horizontal Axis Wind Turbines (HAWT). The main targets are the drift motions and the additional damping caused by the operating rotor, so-called aerodynamic damping. The semisubmersible used in the Offshore Code Comparison Collaboration Continuation (OC4) project, which operated under International Energy Agency (IEA) Wind Task 30, is chosen for this study. Two numerical models are built in aNyPHATAS, a coupled hydrodynamic and aerodynamic tool for simulations of floating wind turbines. The numerical model of the original design of the semisubmersible (OC4), and a numerical model calibrated against model ...
The offshore wind industry is rapidly maturing and is now expanding to more extreme environments in ...
At the moment, offshore wind is an indispensable source of energy. Compared to onshore wind, wind sp...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
AbstractThe objective of this work is to study the effect of the rotor thrust on the motions of a se...
A two MW floating offshore wind turbine is currently developed within the EU-FP7 project FLOATGEN. A...
The subject of this study is the verification and the validation of existing numerical codes for flo...
A detailed study is undertaken of the computational modelling of a sub-platform for floating offshor...
International audienceOver the last decade, several coupled simulation tools have been developed in ...
International audienceDepending on the environmental conditions, floating Horizontal Axis Wind Turbi...
Offshore floating wind turbines represent the future of wind energy. However, significant challenges...
An accurate prediction of aerodynamic and hydrodynamic loads on an offshore floating wind turbine pl...
Aerodynamic performance of a floating offshore wind turbine (FOWT) is significantly influenced by pl...
Offshore floating wind turbines represent the future of wind energy. However, significant challenges...
This paper documents the round robin testing campaign carried out on a floating wind turbine as part...
This paper provides a summary of the work done within Phase III of the Offshore Code Comparison, Col...
The offshore wind industry is rapidly maturing and is now expanding to more extreme environments in ...
At the moment, offshore wind is an indispensable source of energy. Compared to onshore wind, wind sp...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
AbstractThe objective of this work is to study the effect of the rotor thrust on the motions of a se...
A two MW floating offshore wind turbine is currently developed within the EU-FP7 project FLOATGEN. A...
The subject of this study is the verification and the validation of existing numerical codes for flo...
A detailed study is undertaken of the computational modelling of a sub-platform for floating offshor...
International audienceOver the last decade, several coupled simulation tools have been developed in ...
International audienceDepending on the environmental conditions, floating Horizontal Axis Wind Turbi...
Offshore floating wind turbines represent the future of wind energy. However, significant challenges...
An accurate prediction of aerodynamic and hydrodynamic loads on an offshore floating wind turbine pl...
Aerodynamic performance of a floating offshore wind turbine (FOWT) is significantly influenced by pl...
Offshore floating wind turbines represent the future of wind energy. However, significant challenges...
This paper documents the round robin testing campaign carried out on a floating wind turbine as part...
This paper provides a summary of the work done within Phase III of the Offshore Code Comparison, Col...
The offshore wind industry is rapidly maturing and is now expanding to more extreme environments in ...
At the moment, offshore wind is an indispensable source of energy. Compared to onshore wind, wind sp...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...