Affiliation of Author(s):航空学院
Journal:RENEWABLE ENERGY
Key Words:Wake model Wind turbine wakes Multiple wakes interaction Power losses Horns Rev wind farm
Abstract:The improved analytical wake model named as 2D_k Jensen model (which was proposed to overcome some shortcomes in the classical Jensen wake model) is applied and validated in this work for wind turbine multi-wake predictions. Different from the original Jensen model, this newly developed 2D_k Jensen model uses a cosine shape instead of the top-hat shape for the velocity deficit in the wake, and the wake decay rate as a variable that is related to the ambient turbulence as well as the rotor generated turbulence. Coupled with four different multi-wake combination models, the 2D_k Jensen model is assessed through (1) simulating two wakes interaction under full wake and partial wake conditions and (2) predicting the power production in the Horns Rev wind farm for different wake sectors around two different wind directions. Through comparisons with field measurements, results from Large Eddy Simulations (LES) as well as results from other commercial codes, it is found that the predictions obtained with the 2D_k Jensen model exhibit good to excellent agreements with experimental and LES data. (C) 2016 Elsevier Ltd. All rights reserved.
ISSN No.:0960-1481
Translation or Not:no
Date of Publication:2017-03-01
Co-author:Tian, Linlin,Zhu, Weijun,Shen, Wenzhong,Song, Yilei
Correspondence Author:赵宁
Professor
Supervisor of Doctorate Candidates
Alma Mater:中国科学院计算中心
Education Level:中科院计算中心
Degree:Doctoral Degree in Science
School/Department:College of Aerospace Engineering
Discipline:Flight Vehicle Design. Fluid Mechanics
Business Address:C12-304
Contact Information:zhaoam@nuaa.edu.cn
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