This report presents results of the analysis of a 5-MW wind turbine located on a floating offshore tension leg platform (TLP) that was conducted using the fully coupled time-domain aero-hydro-servo-elastic design code FAST with AeroDyn and HydroDyn. The report also provides a description of the development process of the TLP model. The model has been verified via comparisons to frequency-domain calculations. Important differences have been identified between the frequency-domain and time-domain simulations, and have generated implications for the conceptual design process. An extensive loads and stability analysis for ultimate and fatigue loads according to the procedure of the IEC 61400-3 offshore wind turbine design standard was performed...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...
Among various types of floating offshore wind turbines (FOWTs), the tension leg platform (TLP) float...
The harvesting of wind energy is expected to increase greatly in the future because of its stability...
This thesis presents two designs of tension-leg-platforms (TLP) support structures for the 10 MW ref...
In order to tap the world wide offshore wind resources above deep waters, cost efficient floating pl...
There is an increasing interest in using wind turbines oshore, and in deeper water. The tension leg ...
There is an increasing interest in using offshore wind turbines in deeper waters. The tension leg pl...
This thesis describes an experimental and numerical investigation of the dynamic performance of a TL...
In this study, two types of floating offshore wind turbine (FOWT) systems were proposed: a tradition...
The paper will present the preliminary design of the so called GICONR ©- Tension Leg Platform (TLP) ...
The calculation of loads for floating offshore wind turbines requires time-domain integrated simulat...
International audienceResults of a study that investigates the feasibility of platforms that support...
The emerging need for renewable and environmentally friendly sources of energy has led to a recent a...
This paper deals with the development of a simplified, control-oriented mathematical model of an off...
This is a research work.Offshore wind turbines are subjected to combined wind and wave loadings. Sev...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...
Among various types of floating offshore wind turbines (FOWTs), the tension leg platform (TLP) float...
The harvesting of wind energy is expected to increase greatly in the future because of its stability...
This thesis presents two designs of tension-leg-platforms (TLP) support structures for the 10 MW ref...
In order to tap the world wide offshore wind resources above deep waters, cost efficient floating pl...
There is an increasing interest in using wind turbines oshore, and in deeper water. The tension leg ...
There is an increasing interest in using offshore wind turbines in deeper waters. The tension leg pl...
This thesis describes an experimental and numerical investigation of the dynamic performance of a TL...
In this study, two types of floating offshore wind turbine (FOWT) systems were proposed: a tradition...
The paper will present the preliminary design of the so called GICONR ©- Tension Leg Platform (TLP) ...
The calculation of loads for floating offshore wind turbines requires time-domain integrated simulat...
International audienceResults of a study that investigates the feasibility of platforms that support...
The emerging need for renewable and environmentally friendly sources of energy has led to a recent a...
This paper deals with the development of a simplified, control-oriented mathematical model of an off...
This is a research work.Offshore wind turbines are subjected to combined wind and wave loadings. Sev...
This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating ...
Among various types of floating offshore wind turbines (FOWTs), the tension leg platform (TLP) float...
The harvesting of wind energy is expected to increase greatly in the future because of its stability...