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Continued results from a field campaign of wake steering applied at a commercial wind farm – Part 2

Paul Fleming, Jennifer King, Eric Simley, Jason Roadman, Andrew Scholbrock, P. J. Murphy, Julie K. Lundquist, Patrick Moriarty, Katherine E. Fleming-Dutra, Jeroen van Dam, Christopher J. Bay, Rafael Mudafort, David Jäger, Jason Skopek, Michael L. Scott, Brady Ryan, Charles Guernsey, Dan Brake

2020Wind energy science127 citationsDOIOpen Access PDF

Abstract

Abstract. This paper presents the results of a field campaign investigating the performance of wake steering applied at a section of a commercial wind farm. It is the second phase of the study for which the first phase was reported in Fleming et al. (2019). The authors implemented wake steering on two turbine pairs, and compared results with the latest FLORIS (FLOw Redirection and Induction in Steady State) model of wake steering, showing good agreement in overall energy increase. Further, although not the original intention of the study, we also used the results to detect the secondary steering phenomenon. Results show an overall reduction in wake losses of approximately 6.6 % for the regions of operation, which corresponds to achieving roughly half of the static optimal result.

Topics & Concepts

WakeTurbineFlow (mathematics)Phase (matter)Field (mathematics)Marine engineeringEngineeringEnvironmental scienceAerospace engineeringAutomotive engineeringPhysicsMechanicsMathematicsPure mathematicsQuantum mechanicsWind Energy Research and DevelopmentAerodynamics and Fluid Dynamics ResearchWind and Air Flow Studies
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