Experimental study of stall in an airfoil with forced airflow provided by an integrated cross-flow fan

被引:5
|
作者
Askari, S. [1 ]
Shojaeefard, M. H. [1 ]
Goudarzi, K. [1 ]
机构
[1] Iran Univ Sci & Technol, Dept Mech Engn, Tehran 16844, Iran
关键词
aerodynamic coefficients; angle of attack; flap; stall; FanWing; Reynolds number; tip speed ratio;
D O I
10.1243/09544100JAERO723
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The objective of this article is to experimentally determine the stall characteristics of the FanWing airfoil. The experiments have been performed at various angles of attack, tip speed ratios, Reynolds numbers, and flap deflection angles. The experiments showed that the lift coefficient and stall angle of attack of the airfoil (value of angle of attack at which the lift-to-drag ratio is maximum) increase and its drag coefficient decreases with the tip speed ratio; however, its stall angle of attack decreases with the Reynolds number. Thus, high Reynolds number flows over this airfoil are more prone to separation and stall, and therefore, the tip speed ratio must be increased by enhancing the rotational speed or the angle of attack must be reduced to avoid stall and separation. It was perceived that the lift coefficient curve gives the maximum value at 40 degrees < alpha < 50 degrees (alpha is the angle of attack) interval, depending on the tip speed ratio and the Reynolds number. Experiments revealed that the airfoil lift coefficient increases significantly with the flap deflection angle, and therefore, a feasible option for bypassing the stall problem is to increase the flap deflection angle instead of the angle of attack for providing the required lift. Detailed analysis of the experimental results showed no relation between the flap angle and angle of attack.
引用
收藏
页码:97 / 104
页数:8
相关论文
共 50 条
  • [21] INTERNAL FLOW IN CROSS-FLOW FAN FOR AIR CONDITIONER
    Chen CichangJiangsu University of Science and TechnologyFukano Tohru Hara YoshinoriKyushu University
    Chinese Journal of Mechanical Engineering(English Edition), 1995, (02) : 160 - 167
  • [22] Design and Characterization of a Bearingless Cross-Flow Fan
    Bagaric, Ivana
    Steinert, Daniel
    Wassmer, Florian
    Holenstein, Thomas
    Nussbaumer, Thomas
    Kolar, Johann W.
    2021 IEEE/ASME INTERNATIONAL CONFERENCE ON ADVANCED INTELLIGENT MECHATRONICS (AIM), 2021, : 1195 - 1200
  • [23] Supercritical Operation of Bearingless Cross-Flow Fan
    Bagaric, Ivana
    Steinert, Daniel
    Nussbaumer, Thomas
    Kolar, Johann W.
    MACHINES, 2024, 12 (04)
  • [24] TWIN-ROTOR CROSS-FLOW FAN
    GUNTON, MC
    HOLGATE, MJ
    JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 1978, 20 (04): : 237 - 238
  • [25] Experimental Study on Performance of a Cross-flow Dehumidifier
    Niu, Runping
    Chen, Jingdong
    ENERGY DEVELOPMENT, PTS 1-4, 2014, 860-863 : 1638 - +
  • [26] An experimental study of round jets in cross-flow
    Kelso, RM
    Lim, TT
    Perry, AE
    JOURNAL OF FLUID MECHANICS, 1996, 306 : 111 - 144
  • [27] CROSS-FLOW PROPULSION FAN EXPERIMENTAL DEVELOPMENT AND FINITE-ELEMENT MODELING
    HARLOFF, GJ
    WILSON, DR
    JOURNAL OF AIRCRAFT, 1981, 18 (04): : 310 - 317
  • [28] EXPERIMENTAL-STUDY OF CROSS-FLOW TURBINE
    KHOSROWPANAH, S
    FIUZAT, AA
    ALBERTSON, ML
    JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 1988, 114 (03): : 299 - 314
  • [29] Study on Helicopter Antitorque Device Based on Cross-Flow Fan Technology
    Du Siliang
    Tang Zhengfei
    Xu Pei
    Ji Mengjiang
    INTERNATIONAL JOURNAL OF AEROSPACE ENGINEERING, 2016, 2016
  • [30] Experimental study on spray characteristics of fan nozzle for integrated afterburner in lateral airflow
    Fei, Li
    Zhao, Bingbing
    He, Liming
    Cheng, Weida
    Yu, Jinlu
    Zeng, Hao
    Yuan, Jiahui
    AEROSPACE SCIENCE AND TECHNOLOGY, 2022, 130