Impact of mooring lines dynamics on the fatigue and ultimate loads of three offshore floating wind turbines computed with IEC 61400-3 guideline

Author:

Azcona José1,Palacio David1,Munduate Xabier1,González Leo2,Nygaard Tor Anders3

Affiliation:

1. National Renewable Energy Centre, CENER; Ciudad de la Innovación 7 Sarriguren 31621 Navarra Spain

2. Universidad Politécnica de Madrid, UPM ETSI Navales; Avd. Arco de la Victoria, 4, 28040 Madrid Spain

3. Institute for Energy Technology, IFE Instituttveien; 18, P.O. Box 40, NO-2007 Kjeller Norway

Funder

European Community's IRPWind project

Spanish Ministry for Science and Innovation

Publisher

Wiley

Subject

Renewable Energy, Sustainability and the Environment

Reference26 articles.

1. Masciola M Robertson AN Jonkman JM Driscoll F Investigation of a FAST-OrcaFlex coupling module for integrating turbine and mooring dynamics of offshore floating wind turbines International Conference on Offshore Wind Energy and Ocean Energy Beijing, China 2011

2. Jonkman JM Dynamics modeling and loads analysis of an offshore floating wind turbine PhD Thesis USA 2007

3. Dynamic analysis of mooring cables;Lindahl;International Symposium on Ocean Engineering and Ship Handling,1983

4. Evaluating the importance of mooring line model fidelity in floating offshore wind turbine simulations;Hall;Wind Energy,2014

5. Kallesøe BS Hansen AM Dynamic mooring line modeling in hydro-aero-elastic wind turbine simulations International Offshore and Polar Engineering Conference (ISOPE) Maui, Hawaii, USA 2011

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