The dynamic responses of a spar, tension leg platform (TLP), and two semisubmersible floating wind turbines (FWTs) in selected misaligned wind and wave conditions are investigated using numerical simulation with an aero-hydro-servo-elastic computational tool. For a range of representative operational conditions, the platform motions and short-term fatigue damage in the tower base and tower top are examined. Although some misalignment conditions result in increased motions both parallel and perpendicular to the wave direction, aligned wind and waves cause the largest short-term tower base fa-tigue damage for the studied platforms and conditions. Several factors which lead to larger fatigue damage for certain platforms in particular condition...
Abstract The design and financing of commercial‐scale floating offshore wind projects require a bett...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...
The dynamic responses of a spar, tension leg platform (TLP), and two semisubmersible floating wind t...
Although the majority of studies of tension leg platform wind turbines (TLPWTs) have focused on alig...
As floating wind turbines (FWTs) increase in size and power, the relative contribution of wave and w...
In order to investigate the effects of second-order hydrodynamic loads on a 15 MW floating offshore ...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...
Floating wind turbine has been the highlight in offshore wind industry lately. There has been great ...
Due to integrated stochastic wind and wave loads, the supporting platform of a Floating Offshore Win...
AbstractCoupled non-linear aero-hydro-servo-elastic simulations of three types of floating wind turb...
The present work identifies realistic wave (and associated wind) conditions which could induce ringi...
Offshore wind is seen as part of the solution for reducing the world’s dependency on nonrenewable so...
The current paper addresses a study of a semi-submersible wind turbine, where tower base bending mom...
Coupled non-linear aero-hydro-servo-elastic simulations of three types of floating wind turbines (sp...
Abstract The design and financing of commercial‐scale floating offshore wind projects require a bett...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...
The dynamic responses of a spar, tension leg platform (TLP), and two semisubmersible floating wind t...
Although the majority of studies of tension leg platform wind turbines (TLPWTs) have focused on alig...
As floating wind turbines (FWTs) increase in size and power, the relative contribution of wave and w...
In order to investigate the effects of second-order hydrodynamic loads on a 15 MW floating offshore ...
Reducing the levelised cost of energy is crucial to accelerating the energy transition. To develop o...
Floating wind turbine has been the highlight in offshore wind industry lately. There has been great ...
Due to integrated stochastic wind and wave loads, the supporting platform of a Floating Offshore Win...
AbstractCoupled non-linear aero-hydro-servo-elastic simulations of three types of floating wind turb...
The present work identifies realistic wave (and associated wind) conditions which could induce ringi...
Offshore wind is seen as part of the solution for reducing the world’s dependency on nonrenewable so...
The current paper addresses a study of a semi-submersible wind turbine, where tower base bending mom...
Coupled non-linear aero-hydro-servo-elastic simulations of three types of floating wind turbines (sp...
Abstract The design and financing of commercial‐scale floating offshore wind projects require a bett...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...