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Numerical and Experimental Study of Wake Redirection Techniques in a Boundary Layer Wind Tunnel

  • J. Wang
  • , S. Foley
  • , E. M. Nanos
  • , T. Yu
  • , F. Campagnolo
  • , C. L. Bottasso
  • , A. Zanotti
  • , A. Croce
  • Technical University of Munich
  • Politecnico di Milano

Research output: Contribution to journalConference articlepeer-review

54 Scopus citations

Abstract

The aim of the present paper is to validate a wind farm LES framework in the context of two distinct wake redirection techniques: yaw misalignment and individual cyclic pitch control. A test campaign was conducted using scaled wind turbine models in a boundary layer wind tunnel, where both particle image velocimetry and hot-wire thermo anemometers were used to obtain high quality measurements of the downstream flow. A LiDAR system was also employed to determine the non-uniformity of the inflow velocity field. A high-fidelity large-eddy simulation lifting-line model was used to simulate the aerodynamic behavior of the system, including the geometry of the wind turbine nacelle and tower. A tuning-free Lagrangian scale-dependent dynamic approach was adopted to improve the sub-grid scale modeling. Comparisons with experimental measurements are used to systematically validate the simulations. The LES results are in good agreement with the PIV and hot-wire data in terms of time-averaged wake profiles, turbulence intensity and Reynolds shear stresses. Discrepancies are also highlighted, to guide future improvements.

Original languageEnglish
Article number012048
JournalJournal of Physics: Conference Series
Volume854
Issue number1
DOIs
StatePublished - 13 Jun 2017
EventWake Conference 2017 - Visby, Sweden
Duration: 30 May 20171 Jun 2017

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

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