NUMERICAL STUDY OF THE WIND TURBINE WAKE FLOW AND EFFECTS OF THE INFLOW TURBULENCE

Considering the fact that wind turbines operate at the bottom of the atmospheric boundary layer (ABL) where the turbulence is at a high level, and the difficulty of mesh generation in the fully modelled numerical simulation. It is necessary to carry out researches to study the wake flow of wind turb...

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Main Authors: Xiaoyu Luo, Shengyu Lu
Format: Article
Language:ces
Published: Czech Technical University, Prague 2018-12-01
Series:Civil Engineering Journal
Subjects:
CFD
Online Access:http://civilengineeringjournal.cz/archive/issues/2018/2018_4/4-2018-0044-(548-560).pdf
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spelling doaj-5caf0e6407484268bac471d3cb43b8212020-11-25T01:30:12ZcesCzech Technical University, PragueCivil Engineering Journal1805-25762018-12-012018454856010.14311/CEJ.2018.04.0044NUMERICAL STUDY OF THE WIND TURBINE WAKE FLOW AND EFFECTS OF THE INFLOW TURBULENCEXiaoyu Luo0Shengyu Lu1Electric Power Research Institute of Guangdong Power Grid Co., Ltd., Guangzhou, Guangdong, ChinaHuazhong University of Science and Technology, Hubei Wuhan, 430074, ChinaConsidering the fact that wind turbines operate at the bottom of the atmospheric boundary layer (ABL) where the turbulence is at a high level, and the difficulty of mesh generation in the fully modelled numerical simulation. It is necessary to carry out researches to study the wake flow of wind turbines with consideration of the inflow turbulence. Therefore, a numerical method generating turbulence was proposed and the results show good agreement with those in experiment, based on which the flow fields in the wake of a wind turbine at two tip speed ratios were examined in detail through three actuator methods, namely, ADM, ADM-R and ALM. The performances of these methods were studied and the error sources for each method are clarified. Moreover, the computational efficiency was revealed and the influencing factor for the efficiency is concluded. Besides, the equilibrium relation of the N-S equation in the wake is revealed, which provides a theoretical basis for the optimal arrangement of the wind turbine. It shows that the mean velocity and fluctuating velocity vary greatly near the wind turbine, and become stable gradually away from the wind turbine. The results of ALM method show the best agreement with the experiment. At near wake region, the turbulent stress term, pressure gradient term and convection term mainly contribute to the equation equilibrium, and convection term is in equilibrium with the turbulent stress term at far wake. The results of ALM method are the most accurate and the most time consuming.http://civilengineeringjournal.cz/archive/issues/2018/2018_4/4-2018-0044-(548-560).pdfActuator diskActuating lineWind turbines wakeCFDNumerical simulation
collection DOAJ
language ces
format Article
sources DOAJ
author Xiaoyu Luo
Shengyu Lu
spellingShingle Xiaoyu Luo
Shengyu Lu
NUMERICAL STUDY OF THE WIND TURBINE WAKE FLOW AND EFFECTS OF THE INFLOW TURBULENCE
Civil Engineering Journal
Actuator disk
Actuating line
Wind turbines wake
CFD
Numerical simulation
author_facet Xiaoyu Luo
Shengyu Lu
author_sort Xiaoyu Luo
title NUMERICAL STUDY OF THE WIND TURBINE WAKE FLOW AND EFFECTS OF THE INFLOW TURBULENCE
title_short NUMERICAL STUDY OF THE WIND TURBINE WAKE FLOW AND EFFECTS OF THE INFLOW TURBULENCE
title_full NUMERICAL STUDY OF THE WIND TURBINE WAKE FLOW AND EFFECTS OF THE INFLOW TURBULENCE
title_fullStr NUMERICAL STUDY OF THE WIND TURBINE WAKE FLOW AND EFFECTS OF THE INFLOW TURBULENCE
title_full_unstemmed NUMERICAL STUDY OF THE WIND TURBINE WAKE FLOW AND EFFECTS OF THE INFLOW TURBULENCE
title_sort numerical study of the wind turbine wake flow and effects of the inflow turbulence
publisher Czech Technical University, Prague
series Civil Engineering Journal
issn 1805-2576
publishDate 2018-12-01
description Considering the fact that wind turbines operate at the bottom of the atmospheric boundary layer (ABL) where the turbulence is at a high level, and the difficulty of mesh generation in the fully modelled numerical simulation. It is necessary to carry out researches to study the wake flow of wind turbines with consideration of the inflow turbulence. Therefore, a numerical method generating turbulence was proposed and the results show good agreement with those in experiment, based on which the flow fields in the wake of a wind turbine at two tip speed ratios were examined in detail through three actuator methods, namely, ADM, ADM-R and ALM. The performances of these methods were studied and the error sources for each method are clarified. Moreover, the computational efficiency was revealed and the influencing factor for the efficiency is concluded. Besides, the equilibrium relation of the N-S equation in the wake is revealed, which provides a theoretical basis for the optimal arrangement of the wind turbine. It shows that the mean velocity and fluctuating velocity vary greatly near the wind turbine, and become stable gradually away from the wind turbine. The results of ALM method show the best agreement with the experiment. At near wake region, the turbulent stress term, pressure gradient term and convection term mainly contribute to the equation equilibrium, and convection term is in equilibrium with the turbulent stress term at far wake. The results of ALM method are the most accurate and the most time consuming.
topic Actuator disk
Actuating line
Wind turbines wake
CFD
Numerical simulation
url http://civilengineeringjournal.cz/archive/issues/2018/2018_4/4-2018-0044-(548-560).pdf
work_keys_str_mv AT xiaoyuluo numericalstudyofthewindturbinewakeflowandeffectsoftheinflowturbulence
AT shengyulu numericalstudyofthewindturbinewakeflowandeffectsoftheinflowturbulence
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