The present work describes the experiences gained from the design methodology and operation of a 3D physical model experiment aimed to investigate the dynamic behaviour of a spar buoy (SB) off-shore floating wind turbine (WT) under different wind and wave conditions. The physical model tests have been performed at Danish Hydraulic Institute (DHI) off-shore wave basin within the European Union-Hydralab+ Initiative, in April 2019. The floating WT model has been subjected to a combination of regular and irregular wave attacks and wind loads
The installation of floating wind farms in deeper water is encouraged by the stronger and steadier w...
This study investigated the dynamic behaviour of a spar-type offshore floating wind turbine (OFWT) a...
ABSTRACT: The present paper describes the experiences gained from the design methodology and operati...
The present work describes the experiences gained from the design methodology and operation of a 3D ...
The present paper describes the experiences gained from the design methodology and operation of a 3D...
The present paper describes the experiences gained from the design methodology and operation of a 3D...
The present paper describes the experiences gained from the design methodology and operation of a 3D...
Floating Wind Turbines (F-WT) represent an important trade-off in terms of wind energy potential and...
In the present paper, the dynamic response of a spar buoy wind turbine under different wind and wave...
The present paper describes the experiences gained from the design methodology and operation of ...
This paper summarises the experience gained from wave basin experiments aimed at investigating the d...
This paper summarises the experience gained from wave basin experiments aimed at investigating the d...
The knowledge of the behavior of floating offshore wind turbines (W/T) under wave and/or wind action...
The installation of floating wind farms in deeper water is encouraged by the stronger and steadier w...
The installation of floating wind farms in deeper water is encouraged by the stronger and steadier w...
The installation of floating wind farms in deeper water is encouraged by the stronger and steadier w...
This study investigated the dynamic behaviour of a spar-type offshore floating wind turbine (OFWT) a...
ABSTRACT: The present paper describes the experiences gained from the design methodology and operati...
The present work describes the experiences gained from the design methodology and operation of a 3D ...
The present paper describes the experiences gained from the design methodology and operation of a 3D...
The present paper describes the experiences gained from the design methodology and operation of a 3D...
The present paper describes the experiences gained from the design methodology and operation of a 3D...
Floating Wind Turbines (F-WT) represent an important trade-off in terms of wind energy potential and...
In the present paper, the dynamic response of a spar buoy wind turbine under different wind and wave...
The present paper describes the experiences gained from the design methodology and operation of ...
This paper summarises the experience gained from wave basin experiments aimed at investigating the d...
This paper summarises the experience gained from wave basin experiments aimed at investigating the d...
The knowledge of the behavior of floating offshore wind turbines (W/T) under wave and/or wind action...
The installation of floating wind farms in deeper water is encouraged by the stronger and steadier w...
The installation of floating wind farms in deeper water is encouraged by the stronger and steadier w...
The installation of floating wind farms in deeper water is encouraged by the stronger and steadier w...
This study investigated the dynamic behaviour of a spar-type offshore floating wind turbine (OFWT) a...
ABSTRACT: The present paper describes the experiences gained from the design methodology and operati...