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OC5 project phase II: validation of global loads of the deepCwind floating semisubmersible wind turbine

Authors :
Roger Bergua
Climent Molins
Habib J. Dagher
Jacob Qvist
Koen Hermans
Carlos Barrera Sanchez
Rob Harries
Pauline Bozonnet
Carlos Guedes Soares
Yannick Debruyne
E. Uzunoglu
Fabian Wendt
Jacobus Bernardus De Vaal
Ludovic Bouy
Anders Yde
Wojciech Popko
Amy Robertson
Jason Jonkman
Sho Oh
José Azcona
Ilmas Bayati
Josean Galván
Christos Galinos
Hyunkyoung Shin
Felipe Vittori
Sebastien Gueydon
Iñigo Mendikoa
Universitat Politècnica de Catalunya. Departament d'Enginyeria Civil i Ambiental
Universitat Politècnica de Catalunya. ATEM - Anàlisi i Tecnologia d'Estructures i Materials
Publica
Source :
UPCommons. Portal del coneixement obert de la UPC, Universitat Politècnica de Catalunya (UPC), Robertson, A N, Wendt, F, Jonkman, J M, Popko, W, Dagher, H, Gueydon, S, Qvist, J, Vittori, F, Azcona, J, Uzunoglu, E, Soares, C G, Harries, R, Yde, A, Galinos, C, Hermans, K, de Vaal, J B, Bozonnet, P, Bouy, L, Bayati, I, Bergua, R, Galvan, J, Mendikoa, I, Sanchez, C B, Shin, H, Oh, S, Molins, C & Debruyne, Y 2017, ' OC5 Project Phase II: Validation of Global Loads of the DeepCwind Floating Semisubmersible Wind Turbine ', Energy Procedia, vol. 137, pp. 38-57 . https://doi.org/10.1016/j.egypro.2017.10.333, TECNALIA Publications, Fundación Tecnalia Research & Innovation, Recercat. Dipósit de la Recerca de Catalunya, instname
Publication Year :
2017

Abstract

This paper summarizes the findings from Phase II of the Offshore Code Comparison, Collaboration, Continued, with Correlation project. The project is run under the International Energy Agency Wind Research Task 30, and is focused on validating the tools used for modeling offshore wind systems through the comparison of simulated responses of select system designs to physical test data. Validation activities such as these lead to improvement of offshore wind modeling tools, which will enable the development of more innovative and cost-effective offshore wind designs. For Phase II of the project, numerical models of the DeepCwind floating semisubmersible wind system were validated using measurement data from a 1/50th-scale validation campaign performed at the Maritime Research Institute Netherlands offshore wave basin. Validation of the models was performed by comparing the calculated ultimate and fatigue loads for eight different wave-only and combined wind/wave test cases against the measured data, after calibration was performed using free-decay, wind-only, and wave-only tests. The results show a decent estimation of both the ultimate and fatigue loads for the simulated results, but with a fairly consistent underestimation in the tower and upwind mooring line loads that can be attributed to an underestimation of waveexcitation forces outside the linear wave-excitation region, and the presence of broadband frequency excitation in the experimental measurements from wind. Participant results showed varied agreement with the experimental measurements based on the modeling approach used. Modeling attributes that enabled better agreement included: the use of a dynamic mooring model; wave stretching, or some other hydrodynamic modeling approach that excites frequencies outside the linear wave region; nonlinear wave kinematics models; and unsteady aerodynamics models. Also, it was observed that a Morison-only hydrodynamic modeling approach could create excessive pitch excitation and resulting tower loads in some frequency bands. This work was supported by the U.S. Department of Energy under Contract No. DEAC36- 08GO28308 with the National Renewable Energy Laboratory. Some of the funding for the work was provided by the DOE Office of Energy Efficiency and Renewable Energy, Wind and Water Power Technologies Office.

Details

Language :
English
Database :
OpenAIRE
Journal :
UPCommons. Portal del coneixement obert de la UPC, Universitat Politècnica de Catalunya (UPC), Robertson, A N, Wendt, F, Jonkman, J M, Popko, W, Dagher, H, Gueydon, S, Qvist, J, Vittori, F, Azcona, J, Uzunoglu, E, Soares, C G, Harries, R, Yde, A, Galinos, C, Hermans, K, de Vaal, J B, Bozonnet, P, Bouy, L, Bayati, I, Bergua, R, Galvan, J, Mendikoa, I, Sanchez, C B, Shin, H, Oh, S, Molins, C & Debruyne, Y 2017, ' OC5 Project Phase II: Validation of Global Loads of the DeepCwind Floating Semisubmersible Wind Turbine ', Energy Procedia, vol. 137, pp. 38-57 . https://doi.org/10.1016/j.egypro.2017.10.333, TECNALIA Publications, Fundación Tecnalia Research & Innovation, Recercat. Dipósit de la Recerca de Catalunya, instname
Accession number :
edsair.doi.dedup.....b507509ac916e4f6ff2577aa5f024374
Full Text :
https://doi.org/10.1016/j.egypro.2017.10.333