Wind turbine wakes over hills

被引:39
|
作者
ShaMsoddin, Sina [1 ]
Porte-Agel, Fernando [1 ]
机构
[1] Ecole Polytech Fed Lausanne, Wind Engn & Renewable Energy Lab WIRE, EPFL ENAC IIE WIRE, CH-1015 Lausanne, Switzerland
基金
瑞士国家科学基金会;
关键词
turbulent boundary layers; turbulent flows; wakes; LARGE-EDDY SIMULATION; BOUNDARY-LAYER FLOW; FINITE-DIFFERENCE MODEL; SUBGRID-SCALE MODELS; TURBULENT-FLOW; COMPLEX TERRAIN; CURVED HILL; AIR-FLOW; PERFORMANCE; CURVATURE;
D O I
10.1017/jfm.2018.653
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Understanding and predicting the behaviour of wind turbine wake flows over hills is important for optimal design of wind-farm configurations on topography. In this study, we present an analytical modelling framework together with large-eddy simulation (LES) results to investigate turbine wakes over two-dimensional hills. The analytical model consists of two steps. In the first step, we deal with the effect of the pressure gradient on the wake evolution; and in the second step, we consider the effect of the hill-induced streamline distortion on the wake. This model enables us to obtain the wake recovery rate, the mean velocity and velocity deficit profiles and the wake trajectory in the presence of the hill. Moreover, we perform LES to test our model and also to obtain new complementary insight about such flows. Especially, we take advantage of the LES data to perform a special analysis of the behaviour of the wake on the leeward side of the hill. It is found that the mainly favourable pressure gradient on the windward side of the hill accelerates the wake recovery and the adverse pressure gradient on the leeward side decelerates it. The wake trajectory for a hill of the same height as the turbine's hub height is found to closely follow the hill profile on the windward side, but it maintains an almost constant elevation (a horizontal line) downstream of the hilltop. The trajectory of the wake on the leeward side is also studied for a limiting case of an escarpment, and it is shown that an internal boundary layer forms on the plateau which leads to an upward displacement of the wake centre. Finally, a parametric study of the position of the turbine with respect to the hill is performed to further elucidate the effect of the hill-induced pressure gradient on the wind turbine wake recovery.
引用
收藏
页码:671 / 702
页数:32
相关论文
共 50 条
  • [31] Terrain effects on characteristics of surface wind and wind turbine wakes
    Tian, Wei
    Ozbay, Ahmet
    Hu, Hui
    FRONTIERS IN FLUID MECHANICS RESEARCH, 2015, 126 : 542 - 548
  • [32] Wind turbine wakes on escarpments: A wind-tunnel study
    Dar, Arslan Salim
    Porte-Agel, Fernando
    RENEWABLE ENERGY, 2022, 181 : 1258 - 1275
  • [33] Wind-turbine wakes responding to stably stratified flow over complex terrain
    Englberger, Antonia
    Doernbrack, Andreas
    SCIENCE OF MAKING TORQUE FROM WIND (TORQUE 2018), 2018, 1037
  • [34] Upward Shift of Wind Turbine Wakes in Large Wind Farms
    Wang, Zewei
    Yang, Xiaolei
    ENERGIES, 2023, 16 (24)
  • [35] UNDERSTANDING THE INFLUENCE OF TURBINE GEOMETRY AND ATMOSPHERIC TURBULENCE ON WIND TURBINE WAKES
    Gu, Ping
    Kuo, Jim Y. J.
    Romero, David A.
    Amon, Cristina H.
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2016, VOL. 6B, 2017,
  • [36] Assessment of Wind over Complex Terrain Considering the Effects of Topography, Atmospheric Stability and Turbine Wakes
    Yamaguchi, Atsushi
    Tavana, Alireza
    Ishihara, Takeshi
    ATMOSPHERE, 2024, 15 (06)
  • [37] An Analytical Model for the Effect of Vertical Wind Veer on Wind Turbine Wakes
    Abkar, Mandi
    Sorensen, Jens Norkaer
    Porte-Agel, Fernando
    ENERGIES, 2018, 11 (07):
  • [38] Numerical study of wind turbine wakes over escarpments by a modified delayed detached eddy simulation
    Qian, Guo-Wei
    Ishihara, Takeshi
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2019, 191 : 41 - 53
  • [39] Modelling of offshore wind turbine wakes with the wind farm program FLaP
    Lange, B
    Waldl, HP
    Guerrero, AG
    Heinemann, D
    Barthelmie, RJ
    WIND ENERGY, 2003, 6 (01) : 87 - 104
  • [40] Characteristics of wind turbine wakes for different blade designs
    Dong, Guodan
    Qin, Jianhua
    Li, Zhaobin
    Yang, Xiaolei
    JOURNAL OF FLUID MECHANICS, 2023, 965