Effect of protuberances on the aerodynamic performance of a wind turbine blade - a review

被引:0
|
作者
Maurya, Nancy [1 ]
Patil, Anuj U. [1 ]
Salunkhe, Pramod B. [1 ]
Varpe, Mahesh [2 ]
机构
[1] Manipal Acad Higher Educ, Manipal Inst Technol, Dept Aeronaut & Automobile Engn, Manipal 576104, Karnataka, India
[2] MS Ramaiah Univ Appl Sci, Dept Aerosp Engn, Bengaluru, Karnataka, India
关键词
Leading edge protuberances; tubercles; power coefficient; wind turbine performance; horizontal axis wind-turbine; vertical axis wind-turbine; LEADING-EDGE TUBERCLES; HUMPBACK WHALE; TRAILING-EDGE; VERTICAL-AXIS; AIRFOIL; FLOW; STALL; AEROFOIL; DESIGN; REDUCTION;
D O I
10.1080/15567036.2024.2321294
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper thoroughly reviews the influence of protuberances on the performance of a wind-turbine blade in terms of aerodynamic characteristics, power generation capability, and noise emission. It is observed that the protuberances are significantly useful in improving the aerodynamic performance of wind turbine blades, especially in the post-stall regime and during fluctuating wind conditions, such as wind gusts. The protuberance amplitude was found to be the dominant parameter to influence the blade performance. The amplitude and wavelength were tested in the range of 2-12%c and 2-50%c, respectively. The highest wind turbine performance was observed at small amplitude and large wavelength in the pre-stall regime and at large amplitude and small wavelength in the post-stall regime. Incorporating leading edge protuberances may increase lift and power coefficients by 50 and 55%, respectively, and reduce noise emission by nearly 16 dB. With the increase in the angle of attack, the instability noise was found to change its form. The broadband noise forms at a lower angle of attack (similar to 2 degrees) which converts to the tonal noise at the angle of attack, 6.5 degrees. The protuberances substantially alter the boundary layer flow, subsequently modifying the pressure and velocity field over the suction surface of the blade. A pair of vortices forms across a protuberance, which exchanges momentum with the boundary layer flow and helps delay/eliminate the flow separation. This flow separation control is responsible for the benefits as mentioned above.
引用
下载
收藏
页码:3416 / 3431
页数:16
相关论文
共 50 条
  • [41] Numerical Study on the Effect of Swept Blade on the Aerodynamic Performance of Wind Turbine at High Tip Speed Ratio
    Zuo, H. M.
    Liu, C.
    Yang, H.
    Wang, F.
    SCIENCE OF MAKING TORQUE FROM WIND (TORQUE 2016), 2016, 753
  • [42] Efinement analysis on aerodynamic performance of large wind turbine system considering blade pitch angle effect
    Wang, Xiaohai
    Ke, Shitang
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2020, 41 (08): : 304 - 313
  • [43] Numerical investigation of the effect of winglet configurations with multiple cant angles on the aerodynamic performance of wind turbine blade
    Wardhana, Bayu K.
    Shin, Byeongrog
    INTERNATIONAL JOURNAL OF SUSTAINABLE ENERGY, 2024, 43 (01)
  • [45] EFFECT OF INFLOW CONDITIONS ON WIND TURBINE BLADE PERFORMANCE
    Kumar, Kiran
    Piragalathalwar, Sudhakar
    Bijlani, Jitendra
    Madsen, Jesper
    PROCEEDINGS OF THE ASME GAS TURBINE INDIA CONFERENCE, 2013, 2014,
  • [46] The Effect of Blade Overlap on The Performance of Savonius Wind Turbine
    Bachtiar, Ibnu Kahfi
    2019 IEEE CONFERENCE ON ENERGY CONVERSION (CENCON), 2019, : 236 - 239
  • [47] ON THE EFFECT OF ALTITUDE ON THE PERFORMANCE OF A SMALL WIND TURBINE BLADE
    Pourrajabian, Abolfazl
    Mirzaei, Masoud
    Ebrahimi, Reza
    Wood, David
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2014, VOL 3B, 2014,
  • [48] ON THE DISTRIBUTION OF AERODYNAMIC LOAD AND STRESS ON WIND TURBINE BLADE
    My Ha Dao
    Quang Tuyen Le
    Zhao, Xiang
    PROCEEDINGS OF ASME 2023 42ND INTERNATIONAL CONFERENCE ON OCEAN, OFFSHORE & ARCTIC ENGINEERING, OMAE2023, VOL 8, 2023,
  • [49] Effect of Rime Ice Accretion on Aerodynamic Characteristics of Wind Turbine Blade Profiles
    Virk, Muhammad
    Homola, Matthew
    Nicklasson, Per
    WIND ENGINEERING, 2010, 34 (02) : 207 - 218
  • [50] Reynolds Number Effect on the Optimization of a Wind Turbine Blade for Maximum Aerodynamic Efficiency
    Ge, Mingwei
    Tian, De
    Deng, Ying
    JOURNAL OF ENERGY ENGINEERING, 2016, 142 (01)