Offshore wind turbines are designed and analyzed using comprehensive simulation tools that account for the coupled dynamics of the wind inflow, aerodynamics, elasticity, and controls of the turbine, along with the incident waves, sea current, hydrodynamics, and foundation dynamics of the support structure. The Offshore Code Comparison Collaboration (OC3), which operated under the International Energy Agency (IEA) Wind Task 23, was established to verify the accuracy of these simulation tools [1]. This work was then extended under the Offshore Code Comparison Collaboration, Continuation (OC4) project under IEA Wind Task 30 [2]. Both of these projects sought to verify the accuracy of offshore wind turbine dynamics simulation tools (or codes) t...
The main objective of the Offshore Code Comparison Collaboration Continuation, with Correlation (OC5...
Current offshore wind turbine designs are basic concepts using standard upwind land-based wind turbi...
International audienceDepending on the environmental conditions, floating Horizontal Axis Wind Turbi...
Offshore wind turbines are designed and analyzed using comprehensive simulation tools (or codes) tha...
Offshore wind turbines are designed and analyzed using comprehensive simulation codes that account f...
The vast offshore wind resource represents a potential to use wind turbines installed offshore to po...
Offshore wind turbines are designed and analyzed using comprehensive simulation codes that account f...
This work presents the results of a benchmark study on aero-servo-hydro-elastic codes for offshore w...
Offshore wind turbines are designed and analyzed using comprehensive simulation codes that account f...
In this paper, the exemplary results of the IEA Wind Task 30 Offshore Code Comparison Collaboration ...
In this paper, the exemplary results of the IEA Wind Task 30 "Offshore Code Comparison Collaboration...
This paper summarizes the findings from Phase II of the Offshore Code Comparison, Collaboration, Con...
A coupled aerodynamic-hydrodynamic-servo simulation software capable of motion and performance predi...
AbstractThis paper summarizes the findings from Phase Ib of the Offshore Code Comparison, Collaborat...
This paper summarizes the findings from Phase Ib of the Offshore Code Comparison, Collaboration, Con...
The main objective of the Offshore Code Comparison Collaboration Continuation, with Correlation (OC5...
Current offshore wind turbine designs are basic concepts using standard upwind land-based wind turbi...
International audienceDepending on the environmental conditions, floating Horizontal Axis Wind Turbi...
Offshore wind turbines are designed and analyzed using comprehensive simulation tools (or codes) tha...
Offshore wind turbines are designed and analyzed using comprehensive simulation codes that account f...
The vast offshore wind resource represents a potential to use wind turbines installed offshore to po...
Offshore wind turbines are designed and analyzed using comprehensive simulation codes that account f...
This work presents the results of a benchmark study on aero-servo-hydro-elastic codes for offshore w...
Offshore wind turbines are designed and analyzed using comprehensive simulation codes that account f...
In this paper, the exemplary results of the IEA Wind Task 30 Offshore Code Comparison Collaboration ...
In this paper, the exemplary results of the IEA Wind Task 30 "Offshore Code Comparison Collaboration...
This paper summarizes the findings from Phase II of the Offshore Code Comparison, Collaboration, Con...
A coupled aerodynamic-hydrodynamic-servo simulation software capable of motion and performance predi...
AbstractThis paper summarizes the findings from Phase Ib of the Offshore Code Comparison, Collaborat...
This paper summarizes the findings from Phase Ib of the Offshore Code Comparison, Collaboration, Con...
The main objective of the Offshore Code Comparison Collaboration Continuation, with Correlation (OC5...
Current offshore wind turbine designs are basic concepts using standard upwind land-based wind turbi...
International audienceDepending on the environmental conditions, floating Horizontal Axis Wind Turbi...