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Global sensitivity study on the semisubmersible substructure of a floating wind turbine : Manufacturing cost, structural properties and hydrodynamics

, , , , and . Ocean engineering, (2021)
DOI: 10.1016/j.oceaneng.2021.108585

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Comparison of Measured and Simulated Structural Loads of an Offshore Wind Turbine at Alpha Ventus, , and . International journal of offshore and polar engineering, 26 (3): 209-218 (2016)Validation of Numerical Models of the Offshore Wind Turbine From the Alpha Ventus Wind Farm Against Full-Scale Measurements Within OC5 Phase III, , , , , , , , , and 17 other author(s). Journal of offshore mechanics and arctic engineering, 143 (1): 012002 (2021)A Surrogate Modeling Approach for Fatigue Damage Assessment of Floating Wind Turbines, and . Proceedings Of The ASME 37th International Conference on Ocean, Offshore and Arctic Engineering, 10 : Ocean Renewable Energy, page OMAE2018-78219, V010T09A065. New York, NY, ASME, (2018)Damage Assessment of Floating Offshore Wind Turbines Using Response Surface Modeling, , and . Energy Procedia, (October 2017)Probabilistic fatigue load assessment for floating wind turbines. Universität Stuttgart, München, Dissertation, (2020)Application of a Monte Carlo procedure for probabilistic fatigue design of floating offshore wind turbines, and . Wind Energy Science, 3 (1): 149-162 (2018)Verification of a Numerical Model of the Offshore Wind Turbine from the Alpha Ventus Wind Farm Within OC5 Phase III, , , , , , , , , and 23 other author(s). Proceedings of the ASME 37th International Conference on Ocean, Offshore and Arctic Engineering 2018, 10 : Ocean Renewable Energy, page OMAE2018-77589, V010T09A056. ASME, (2018)FAST model of the SWE-CPP semi-submersible floating wind turbine platform for the DTU 10MW reference wind turbine, , , and . Dataset, (2020)Related to: 1 Bak, C., Zahle, F., Bitsche, R., Kim, T., Yde, A., Henriksen, L., Hansen, M. H.Blasques, J., Gaunaa, M. Natarajan, A. (2013). The DTU 10-MW Reference Wind Turbine.Load sensitivity analysis for a floating wind turbine on a steel semi-submersible substructure, , , , , , and . Proceedings of the ASME 1st international offshore wind technical conference, 2018, page IOWTC2018-1062, V001T01A042. ASME, (2019)Damage Assessment of Floating Offshore Wind Turbines Using Response Surface Modeling, , and . Energy Procedia, (October 2017)338 (peer-review).