The Y-shape (triangular) semi-submersible foundation has been adopted by most of the built full-scale floating wind turbines, such as Windfloat, Fukushima Mirai and Shimpuu. Considering the non-fully-symmetrical shape and met-ocean condition, the foundation laying angle relative to wind/wave directions will not only influence the downtime and power efficiency of the floating turbine, but also the strength and fatigue safety of the whole structure. However, the dynamic responses induced by various aligned wind and wave load directions have scarcely been investigated comparatively before. In our study, the directionality effects are investigated by means of combined wind and wave tests and coupled multi-body simulations. By comparing the meas...
This is the author accepted manuscript. The final version is available from ASME via the DOI in this...
The current trend for offshore wind energy is that larger turbines are placed on monopile foundation...
New large-scale laboratory data are presented on a physical model of a spar buoy wind turbine with a...
This study focusses on the coupling effects arising from the changes in the hydrodynamic behaviour o...
AbstractThis study focusses on the coupling effects arising from the changes in the hydrodynamic beh...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...
In practice, the ocean waves are short-crested and three-dimensional. The primary objective of the p...
Recently, a number of research groups have paid much attention to the study of Floating Offshore Win...
For the design of floating offshore wind turbines (FOWT), all the load cases need to be calculated b...
The aim of this work is to evaluate data from the offshore wind farm Bockstigen in order to study th...
The design methodology for mooring systems for a spar buoy wind turbine considers the influence of e...
Floating Wind Turbines (F-WT) represent an important trade-off in terms of wind energy potential and...
In a severe sea state, nonlinear wave loads can excite resonant responses of floating wind turbines ...
Floating wind turbines are subjected to stochastic wind and wave loadings. Wind and wave loadings ar...
The dynamic responses of a spar, tension leg platform (TLP), and two semisubmersible floating wind t...
This is the author accepted manuscript. The final version is available from ASME via the DOI in this...
The current trend for offshore wind energy is that larger turbines are placed on monopile foundation...
New large-scale laboratory data are presented on a physical model of a spar buoy wind turbine with a...
This study focusses on the coupling effects arising from the changes in the hydrodynamic behaviour o...
AbstractThis study focusses on the coupling effects arising from the changes in the hydrodynamic beh...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...
In practice, the ocean waves are short-crested and three-dimensional. The primary objective of the p...
Recently, a number of research groups have paid much attention to the study of Floating Offshore Win...
For the design of floating offshore wind turbines (FOWT), all the load cases need to be calculated b...
The aim of this work is to evaluate data from the offshore wind farm Bockstigen in order to study th...
The design methodology for mooring systems for a spar buoy wind turbine considers the influence of e...
Floating Wind Turbines (F-WT) represent an important trade-off in terms of wind energy potential and...
In a severe sea state, nonlinear wave loads can excite resonant responses of floating wind turbines ...
Floating wind turbines are subjected to stochastic wind and wave loadings. Wind and wave loadings ar...
The dynamic responses of a spar, tension leg platform (TLP), and two semisubmersible floating wind t...
This is the author accepted manuscript. The final version is available from ASME via the DOI in this...
The current trend for offshore wind energy is that larger turbines are placed on monopile foundation...
New large-scale laboratory data are presented on a physical model of a spar buoy wind turbine with a...