This paper summarizes the theory behind the modeling that was performed to incorporate an oscillating-water-column type Wave energy Converter (WEC) into the WindFloat hull. The WindFloat is a floating structure supporting a very large (>5MW) wind turbine. By adding a WEC to the structure, the overall economic cost of the project can be improved by sharing both mooring and power infrastructure. A numerical model was developed using the diffraction-radiation code WAMIT and assuming as PTO equipment, a generic wells turbine. It is important to model the turbine accurately, to understand the power capacity of the device. Details on the modeling of the system are discussed and numerical results and compared against experiments as a validation of the model. The effect of coupling between the floating foundation of the WindFloat and the OWC is investigated thoroughly.
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ASME 2011 30th International Conference on Ocean, Offshore and Arctic Engineering
June 19–24, 2011
Rotterdam, The Netherlands
Conference Sponsors:
- Ocean, Offshore and Arctic Engineering Division
ISBN:
978-0-7918-4437-3
PROCEEDINGS PAPER
Modeling of an Oscillating Water Column on the Floating Foundation WindFloat
Alexia Aubault,
Alexia Aubault
Marine Innovation & Technology, Berkeley, CA
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Marco Alves,
Marco Alves
Wave Energy Centre, Lisbon, Portugal
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Anto´nio Sarmento,
Anto´nio Sarmento
Technical University of Lisbon, Lisbon, Portugal
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Dominique Roddier,
Dominique Roddier
Principal Power Inc., Berkeley, CA
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Antoine Peiffer
Antoine Peiffer
Marine Innovation & Technology, Berkeley, CA
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Alexia Aubault
Marine Innovation & Technology, Berkeley, CA
Marco Alves
Wave Energy Centre, Lisbon, Portugal
Anto´nio Sarmento
Technical University of Lisbon, Lisbon, Portugal
Dominique Roddier
Principal Power Inc., Berkeley, CA
Antoine Peiffer
Marine Innovation & Technology, Berkeley, CA
Paper No:
OMAE2011-49014, pp. 235-246; 12 pages
Published Online:
October 31, 2011
Citation
Aubault, A, Alves, M, Sarmento, A, Roddier, D, & Peiffer, A. "Modeling of an Oscillating Water Column on the Floating Foundation WindFloat." Proceedings of the ASME 2011 30th International Conference on Ocean, Offshore and Arctic Engineering. Volume 5: Ocean Space Utilization; Ocean Renewable Energy. Rotterdam, The Netherlands. June 19–24, 2011. pp. 235-246. ASME. https://doi.org/10.1115/OMAE2011-49014
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