Offshore winds are generally stronger and more consistent than winds on land, making the offshore environment attractive for wind energy development. A large part of the offshore wind resource is however located in deep water, where floating turbines are the only economical way of harvesting the energy. The design of offshore floating wind turbines relies on the use of modeling tools that can simulate the entire coupled system behavior. At present, most of these tools include only first-order hydrodynamic theory. However, observations of supposed second-order hydrodynamic responses in wave-tank tests performed by the DeepCwind consortium suggest that second-order effects might be critical. In this paper, the methodology used by the oil and ...
The emerging need for renewable and environmentally friendly sources of energy has led to a recent a...
As a promising renewable energy, offshore wind energy currently is gaining more attention, by which ...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...
AbstractOffshore winds are generally stronger and more consistent than winds on land, making the off...
As offshore wind projects move to deeper waters, floating platforms become the most feasible solutio...
To better access the abundant offshore wind resource, efforts across the world are being undertaken ...
In order to investigate the effects of second-order hydrodynamic loads on a 15 MW floating offshore ...
This work presents a comprehensive computational hydrodynamic analysis of a semisubmersibl...
Various types of floaters have been proposed to support floating offshore wind turbines. The bulk of...
The vast deepwater wind resource represents a potential to use offshore floating wind turbines to po...
Renewable energy is a vital option for our sustainable future. With its high source availability and...
Wind power is a large natural source for renewable energy, and many countries have shown interest in...
In this paper, we present numerical modelling for the investigation of dynamic responses of a floati...
This paper presents a comparative numerical study on the dynamic responses of three Floating Offshor...
Floating Wind Turbines (F-WT) represent an important trade-off in terms of wind energy potential and...
The emerging need for renewable and environmentally friendly sources of energy has led to a recent a...
As a promising renewable energy, offshore wind energy currently is gaining more attention, by which ...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...
AbstractOffshore winds are generally stronger and more consistent than winds on land, making the off...
As offshore wind projects move to deeper waters, floating platforms become the most feasible solutio...
To better access the abundant offshore wind resource, efforts across the world are being undertaken ...
In order to investigate the effects of second-order hydrodynamic loads on a 15 MW floating offshore ...
This work presents a comprehensive computational hydrodynamic analysis of a semisubmersibl...
Various types of floaters have been proposed to support floating offshore wind turbines. The bulk of...
The vast deepwater wind resource represents a potential to use offshore floating wind turbines to po...
Renewable energy is a vital option for our sustainable future. With its high source availability and...
Wind power is a large natural source for renewable energy, and many countries have shown interest in...
In this paper, we present numerical modelling for the investigation of dynamic responses of a floati...
This paper presents a comparative numerical study on the dynamic responses of three Floating Offshor...
Floating Wind Turbines (F-WT) represent an important trade-off in terms of wind energy potential and...
The emerging need for renewable and environmentally friendly sources of energy has led to a recent a...
As a promising renewable energy, offshore wind energy currently is gaining more attention, by which ...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...