AbstractThis study focusses on the coupling effects arising from the changes in the hydrodynamic behaviour of a semi-submersible floating wind turbine when it undergoes large inclinations under wind loading. By means of a range of time-domain simulations, it is shown that both the hull geometric nonlinearity effect and the alteration of viscous hydrodynamic forces can significantly affect the dynamics of a typical floating wind turbine operating in waves at rated conditions. The consequences of said effects for both aligned and misaligned wind and waves are explored. In general terms inclinations are found to increase motions, where the modes that are more affected depend on the relative direction between incident wind and waves. Understand...
Offshore wind energy capitalizes on the higher and less turbulent wind speeds at sea. To enable depl...
A floating offshore wind turbine (FOWT) is a coupled system where a wind turbine with flexible blade...
Floating Offshore Wind Turbines (FOWT) can harness the abundant offshore wind resource at reduced in...
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...
AbstractThis work examines the dynamic response of a single semi-submersible wind turbine (SSWT) bas...
Floating offshore wind technology is being developed rapidly with the aim of harvesting high-energy...
Floating wind technology has the potential to produce low-carbon electricity on a large scale: it a...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...
Floating wind turbines are subjected to stochastic wind and wave loadings. Wind and wave loadings ar...
AbstractOffshore winds are generally stronger and more consistent than winds on land, making the off...
The design and financing of commercial-scale floating offshore wind projects require a better unders...
Floating offshore wind turbines (FOWTs) have received great attention for deep water wind energy har...
Motion and hydroelastic responses of floating offshore wind turbines (FOWT) to irregular waves and w...
Working on floating offshore wind turbines is a complex operation. An important factor is the influe...
Offshore wind energy capitalizes on the higher and less turbulent wind speeds at sea. To enable depl...
A floating offshore wind turbine (FOWT) is a coupled system where a wind turbine with flexible blade...
Floating Offshore Wind Turbines (FOWT) can harness the abundant offshore wind resource at reduced in...
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...
AbstractThis work examines the dynamic response of a single semi-submersible wind turbine (SSWT) bas...
Floating offshore wind technology is being developed rapidly with the aim of harvesting high-energy...
Floating wind technology has the potential to produce low-carbon electricity on a large scale: it a...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...
Floating wind turbines are subjected to stochastic wind and wave loadings. Wind and wave loadings ar...
AbstractOffshore winds are generally stronger and more consistent than winds on land, making the off...
The design and financing of commercial-scale floating offshore wind projects require a better unders...
Floating offshore wind turbines (FOWTs) have received great attention for deep water wind energy har...
Motion and hydroelastic responses of floating offshore wind turbines (FOWT) to irregular waves and w...
Working on floating offshore wind turbines is a complex operation. An important factor is the influe...
Offshore wind energy capitalizes on the higher and less turbulent wind speeds at sea. To enable depl...
A floating offshore wind turbine (FOWT) is a coupled system where a wind turbine with flexible blade...
Floating Offshore Wind Turbines (FOWT) can harness the abundant offshore wind resource at reduced in...