Experimental investigation of wake effects on wind turbine performance

被引:283
作者
Adaramola, M. S. [1 ]
Krogstad, P. -A. [1 ]
机构
[1] Norwegian Univ Sci & Technol, N-7491 Trondheim, Norway
关键词
Wind turbine wake; Wake interference; Wind turbine performance; Wind farm efficiency; FARM; FLOW; AERODYNAMICS; OFFSHORE;
D O I
10.1016/j.renene.2011.01.024
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The wake interference effect on the performance of a downstream wind turbine was investigated experimentally. Two similar model turbines with the same rotor diameter were used. The effects on the performance of the downstream turbine of the distance of separation between the turbines and the amount of power extracted from the upstream turbine were studied. The effects of these parameters on the total power output from the turbines were also estimated. The reduction in the maximum power coefficient of the downstream turbine is strongly dependent on the distance between the turbines and the operating condition of the upstream turbine. Depending on the distance of separation and blade pitch angle, the loss in power from the downstream turbine varies from about 20 to 46% compared to the power output from an unobstructed single turbine operating at its designed conditions. By operating the upstream turbine slightly outside this optimum setting or yawing the upstream turbine, the power output from the downstream turbine was significantly improved. This study shows that the total power output could be increased by installing an upstream turbine which extracts less power than the following turbines. By operating the upstream turbine in yawed condition, the gain in total power output from the two turbines could be increased by about 12%. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2078 / 2086
页数:9
相关论文
共 22 条
  • [1] Adaramola MS, 2009, P EUR OFFSH WIND 200
  • [2] Modelling and measurements of power losses and turbulence intensity in wind turbine wakes at Middelgrunden offshore wind farm
    Barthelmie, R. J.
    Frandsen, S. T.
    Nielsen, M. N.
    Pryor, S. C.
    Rethore, P. -E.
    Jorgensen, H. E.
    [J]. WIND ENERGY, 2007, 10 (06) : 517 - 528
  • [3] Modelling and Measuring Flow and Wind Turbine Wakes in Large Wind Farms Offshore
    Barthelmie, R. J.
    Hansen, K.
    Frandsen, S. T.
    Rathmann, O.
    Schepers, J. G.
    Schlez, W.
    Phillips, J.
    Rados, K.
    Zervos, A.
    Politis, E. S.
    Chaviaropoulos, P. K.
    [J]. WIND ENERGY, 2009, 12 (05) : 431 - 444
  • [4] WAKE EFFECTS IN A LINEAR WIND FARM
    BEYER, HG
    PAHLKE, T
    SCHMIDT, W
    WALDL, HP
    DEWITT, U
    [J]. JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 1994, 51 (03) : 303 - 318
  • [5] Dahlberg J-A, 2009, P EUR OFFSH WIND 200
  • [6] Dahlberg JA, 2003, P EUR WIND EN C EXH
  • [7] DEVRIES O, 1983, ANNU REV FLUID MECH, V15, P77
  • [8] Development of the Riso wind turbine airfoils
    Fuglsang, P
    Bak, C
    [J]. WIND ENERGY, 2004, 7 (02) : 145 - 162
  • [9] Optical vortex tracking studies of a horizontal axis wind turbine in yaw using laser-sheet, flow visualisation
    Grant, I
    Parkin, P
    Wang, X
    [J]. EXPERIMENTS IN FLUIDS, 1997, 23 (06) : 513 - 519
  • [10] HAWT near-wake aerodynamics, part I: Axial flow conditions
    Haans, Wouter
    Sant, Tonio
    van Kuik, Gus
    van Bussel, Gerard
    [J]. WIND ENERGY, 2008, 11 (03) : 245 - 264