Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7917663 | Energy Procedia | 2017 | 19 Pages |
Abstract
Results of three control strategies are reported: Fixed blade pitch, a standard land-based controller, and a tuned controller designed to eliminate the instability. Special rotor ID tests were carried out to characterize the rotor and identify the control parameters. Results for regular waves, focused wave groups, a wind-only test and irregular waves are presented in terms of time series, power spectra and exceedance probability plots. Among the key results are the wind-induced steady offset of floater pitch and surge and the aerodynamic damping of the floater pitch motion. Further, a clear example of the onset of unstable motion at the platform natural pitch frequency is provided along with a detailed analysis of the dynamic response for irregular wave conditions with the three control strategies. The paper ends with the first results of numerical re-modelling of the response for a waves-only test. A good match is found, thus encouraging further work in this direction.
Related Topics
Physical Sciences and Engineering
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Energy (General)
Authors
H. Bredmose, F. Lemmer, M. Borg, A. Pegalajar-Jurado, R.F. Mikkelsen, T. Stoklund Larsen, T. Fjelstrup, W. Yu, A.K. Lomholt, L. Boehm, J. Azcona Armendariz,