The ultra-low Reynolds number airfoil wake

被引:0
|
作者
Md. Mahbub Alam
Y. Zhou
H. X. Yang
H. Guo
J. Mi
机构
[1] The Hong Kong Polytechnic University,Department of Mechanical Engineering
[2] The Hong Kong Polytechnic University,Department of Building Services Engineering
[3] Beijing University of Aeronautics and Astronautics,School of Aeronautical Science and Engineering
[4] Peking University,College of Engineering
来源
Experiments in Fluids | 2010年 / 48卷
关键词
Vortex; Vorticity; Particle Image Velocimetry; Shear Layer; Strouhal Number;
D O I
暂无
中图分类号
学科分类号
摘要
Lift force and the near wake of an NACA 0012 airfoil were measured over the angle (α) of attack of 0°–90° and the chord Reynolds number (Rec), 5.3 × 103–5.1 × 104, with a view to understand thoroughly the near wake of the airfoil at low- to ultra-low Rec. While the lift force is measured using a load cell, the detailed flow structure is captured using laser-Doppler anemometry, particle image velocimetry, and laser-induced fluorescence flow visualization. It has been found that the stall of an airfoil, characterized by a drop in the lift force, occurs at Rec ≥ 1.05 × 104 but is absent at Rec = 5.3 × 103. The observation is connected to the presence of the separation bubble at high Rec but absence of the bubble at ultra-low Rec, as evidenced in our wake measurements. The near-wake characteristics are examined and discussed in detail, including the vortex formation length, wake width, spanwise vorticity, wake bubble size, wavelength of K–H vortices, Strouhal numbers, and their dependence on α and Rec.
引用
收藏
页码:81 / 103
页数:22
相关论文
共 50 条
  • [1] Parametric study of a corrugated airfoil in a forward flight at ultra-low Reynolds number
    Abd El-Latief, Mahmoud E.
    Elsayed, Khairy
    Abdelrahman, Mohamed M.
    SN APPLIED SCIENCES, 2021, 3 (01):
  • [2] Parametric study of a corrugated airfoil in a forward flight at ultra-low Reynolds number
    Mahmoud E. Abd El-Latief
    Khairy Elsayed
    Mohamed M. Abdelrahman
    SN Applied Sciences, 2021, 3
  • [3] Thrust generation and wake structure for flow across a pitching airfoil at low Reynolds number
    Ashraf, Intesaaf
    Agrawal, Amit
    Khan, Majid Hassan
    Sooraj, P.
    Srivastava, Atul
    Sharma, Atul
    SADHANA-ACADEMY PROCEEDINGS IN ENGINEERING SCIENCES, 2015, 40 (08): : 2367 - 2379
  • [4] Thrust generation and wake structure for flow across a pitching airfoil at low Reynolds number
    INTESAAF ASHRAF
    AMIT AGRAWAL
    MAJID HASSAN KHAN
    SOORAJ P
    ATUL SRIVASTAVA
    ATUL SHARMA
    Sadhana, 2015, 40 : 2367 - 2379
  • [5] Design of a low Reynolds number airfoil for small horizontal axis wind turbines
    Singh, Ronit K.
    Ahmed, M. Rafiuddin
    Zullah, Mohammad Asid
    Lee, Young-Ho
    RENEWABLE ENERGY, 2012, 42 : 66 - 76
  • [6] Experimental study of flow field on stepped airfoil at very low Reynolds number
    Matin, Reza Kamyab
    Ghassemi, Hojat
    Ebrahimi, Abbas
    Ghasemi, Bahman
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2017, 231 (09) : 1706 - 1717
  • [7] Monitoring the Wake of Low Reynolds Number Airfoils for Their Aerodynamic Loads Assessment
    Verma, A.
    Kulkarni, V.
    JOURNAL OF APPLIED FLUID MECHANICS, 2024, 17 (11) : 2481 - 2498
  • [8] Vorticity sign law in three-dimensional wake of bluff body at low Reynolds number
    Lin Li-Ming
    ACTA PHYSICA SINICA, 2020, 69 (03)
  • [9] VORTEX SHEDDING ANALYSIS IN THE WAKE OF A FLAT PLATE AT LOW INCIDENCE AND LOW REYNOLDS NUMBER
    Borah, Bastav
    Verma, Anand
    Kulkarni, Vinayak
    Saha, Ujjwal K.
    PROCEEDINGS OF ASME 2021 GAS TURBINE INDIA CONFERENCE (GTINDIA2021), 2021,
  • [10] The effect of cavity modified stepped geometry on aerodynamic performance of an airfoil at a low Reynolds number
    Akbiyik, Hurrem
    PHYSICS OF FLUIDS, 2025, 37 (04)