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INNWIND.EU scaled experiments of the OC4-DeepCwind semi-submersible

, , , , , , , , , , , , , , , , , and . Dataset, (2020)Related to: Lemmer, F., Azcona, J., Matha, D., Amann, F., Campagnolo, F., Bredmose, H., & Montinari, P. (2014). INNWIND.EU D4.24: Floating wind model tests Ecole Centrale de Nantes 2014.
DOI: 10.18419/darus-513

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The TripleSpar campaign: validation of a reduced-order simulation model for floating wind turbines, , , , , , and . Proceedings of the ASME 37th International Conference on Ocean, Offshore and Arctic Engineering - 2018, 10 : Ocean renewable energy, page 2018-78119. New York, NY, The American Society of Mechanical Engineers, (2018)Response of the International Energy Agency (IEA) Wind 15 MW WindCrete and Activefloat floating wind turbines to wind and second-order waves, , , , , , , and . Wind energy science, 6 (3): 867-883 (2021)INNWIND.EU scaled experiments of the OC4-DeepCwind semi-submersible, , , , , , , , , and 8 other author(s). Dataset, (2020)Related to: Lemmer, F., Azcona, J., Matha, D., Amann, F., Campagnolo, F., Bredmose, H., & Montinari, P. (2014). INNWIND.EU D4.24: Floating wind model tests Ecole Centrale de Nantes 2014.