Influence of Reynolds Number on Multi-Objective Aerodynamic Design of a Wind Turbine Blade

被引:9
|
作者
Ge, Mingwei [1 ]
Fang, Le [2 ]
Tian, De [1 ]
机构
[1] North China Elect Power Univ, State Key Lab Alternate Elect Power Syst Renewabl, Beijing, Peoples R China
[2] Beihang Univ, Sinofrench Engn Sch, Beijing 100191, Peoples R China
来源
PLOS ONE | 2015年 / 10卷 / 11期
基金
中国国家自然科学基金;
关键词
D O I
10.1371/journal.pone.0141848
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
At present, the radius of wind turbine rotors ranges from several meters to one hundred meters, or even more, which extends Reynolds number of the airfoil profile from the order of 105 to 10(7). Taking the blade for 3MW wind turbines as an example, the influence of Reynolds number on the aerodynamic design of a wind turbine blade is studied. To make the study more general, two kinds of multi-objective optimization are involved: one is based on the maximum power coefficient (C-Popt) and the ultimate load, and the other is based on the ultimate load and the annual energy production (AEP). It is found that under the same configuration, the optimal design has a larger C-Popt or AEP (C-Popt//AEP) for the same ultimate load, or a smaller load for the same C-Popt//AEP at higher Reynolds number. At a certain tip-speed ratio or ultimate load, the blade operating at higher Reynolds number should have a larger chord length and twist angle for the maximum C-popt//AEP. If a wind turbine blade is designed by using an airfoil database with a mismatched Reynolds number from the actual one, both the load and C-popt//AEP will be incorrectly estimated to some extent. In some cases, the assessment error attributed to Reynolds number is quite significant, which may bring unexpected risks to the earnings and safety of a wind power project.
引用
收藏
页数:25
相关论文
共 50 条
  • [41] Multi-objective design optimization of turbine blade leading edge for enhanced aerothermal performance
    Tejaswini, M.
    Sivapragasam, M.
    SADHANA-ACADEMY PROCEEDINGS IN ENGINEERING SCIENCES, 2021, 46 (04):
  • [42] Multi-objective design optimization of turbine blade leading edge for enhanced aerothermal performance
    M TEJASWINI
    M SIVAPRAGASAM
    Sādhanā, 2021, 46
  • [43] Low Reynolds number effects on aerodynamic loads of a small scale wind turbine
    Lee, Hakjin
    Lee, Duck-Joo
    RENEWABLE ENERGY, 2020, 154 : 1283 - 1293
  • [44] Low Reynolds number effects on aerodynamic loads of a small scale wind turbine
    Lee, Hakjin
    Lee, Duck-Joo
    Renewable Energy, 2020, 154 : 1283 - 1293
  • [45] Multi-objective shape optimization of runner blade for Kaplan turbine
    Semenova, A.
    Chirkov, D.
    Lyutov, A.
    Cherny, S.
    Skorospelov, V.
    Pylev, I.
    27TH IAHR SYMPOSIUM ON HYDRAULIC MACHINERY AND SYSTEMS (IAHR 2014), PTS 1-7, 2014, 22
  • [46] Influence of Reynolds Number on the Aerodynamic Characteristics of Low-pressure Turbine
    Yue L.
    Wang Y.
    Song Y.
    Chen F.
    Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2022, 42 (03): : 1043 - 1051
  • [47] Multi-objective optimisation of horizontal axis wind turbine structure and energy production using aerofoil and blade properties as design variables
    Fischer, Gunter Reinald
    Kipouros, Timoleon
    Savill, Anthony Mark
    RENEWABLE ENERGY, 2014, 62 : 506 - 515
  • [48] RESEARCH ON INFLUENCE OF BLADE FLAPPING MOTION ON AERODYNAMIC CHARACTERISTICS OF WIND TURBINE
    Feng J.
    Zhao Z.
    Chen M.
    Jiang R.
    Wang D.
    Liu Y.
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2023, 44 (07): : 478 - 485
  • [49] Large-scale wind turbine blade design and aerodynamic analysis
    Wang TongGuang
    Wang Long
    Zhong Wei
    Xu BoFeng
    Chen Li
    CHINESE SCIENCE BULLETIN, 2012, 57 (05): : 466 - 472
  • [50] Optimum aerodynamic design for wind turbine blade with a Rankine vortex wake
    Dias Do Rio Vaz, Deborah Aline Tavares
    Pinheiro Vaz, Jerson Rogerio
    Amarante Mesquita, Andre Luiz
    Pinho, Joao Tavares
    Brasil Junior, Antonio Cesar Pinho
    RENEWABLE ENERGY, 2013, 55 : 296 - 304