Periodic dynamic induction control of wind farms: proving the potential in simulations and wind tunnel experiments
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Published:2020-02-21
Issue:1
Volume:5
Page:245-257
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ISSN:2366-7451
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Container-title:Wind Energy Science
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language:en
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Short-container-title:Wind Energ. Sci.
Author:
Frederik Joeri Alexis, Weber Robin, Cacciola StefanoORCID, Campagnolo FilippoORCID, Croce AlessandroORCID, Bottasso CarloORCID, van Wingerden Jan-WillemORCID
Abstract
Abstract. As wind turbines in a wind farm interact with each other, a control problem arises that has been extensively studied in the literature: how can we optimize the power production of a wind farm as a whole? A traditional approach to this problem is called induction control, in which the power capture of an upstream turbine is lowered for the benefit of downstream machines. In recent simulation studies, an alternative approach, where the induction factor is varied over time, has shown promising results. In this paper, the potential of this dynamic induction control (DIC) approach is further investigated. Only periodic variations, where the input is a sinusoid, are studied. A proof of concept for this periodic DIC approach will be given by the execution of scaled wind tunnel experiments, showing for the first time that this approach can yield power gains in real-world wind farms. Furthermore, the effects on the damage equivalent loads (DEL) of the turbine are evaluated in a simulation environment. These indicate that the increase in DEL on the excited turbine is limited.
Publisher
Copernicus GmbH
Subject
Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference26 articles.
1. Annoni, J., Gebraad, P. M., Scholbrock, A. K., Fleming, P. A., and v. Wingerden, J.-W. : Analysis of axial-induction-based wind plant control using an engineering and a high-order wind plant model, Wind Energy, 19, 1135–1150, 2016. a, b 2. Annoni, J., Fleming, P., Scholbrock, A., Roadman, J., Dana, S., Adcock, C., Porte-Agel, F., Raach, S., Haizmann, F., and Schlipf, D.: Analysis of control-oriented wake modeling tools using lidar field results, Wind Energ. Sci., 3, 819–831, https://doi.org/10.5194/wes-3-819-2018, 2018. a, b 3. Bauchau, O. A.: Flexible Multibody Dynamics, in: vol. 176 of Solid Mechanics
and its Applications, Springer Netherlands, Dordrecht, Heidelberg, London,
New York, https://doi.org/10.1007/978-94-007-0335-3, 2011. a 4. Bossanyi, E.: The Design of Closed Loop Controllers for Wind Turbines, Wind
Energy, 3, 149–163, 2000. a 5. Bottasso, C. L. and Croce, A.: Cp-Lambda user manual, Tech. rep., Dipartimento di Scienze e Tecnologie Aerospaziali, Politecnico di Milano, Milano, Italy, 2009–2018. a, b
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