Cable Suspension and Balance System with Low Support Interference and Vibration for Effective Wind Tunnel Tests

被引:6
|
作者
Park, Keum-Yong [1 ,3 ]
Sung, Yeol-Hun [2 ,3 ]
Han, Jae-Hung [3 ]
机构
[1] Agcy Def Dev, POB 35, Daejeon 34186, South Korea
[2] Korea Aerosp Res Inst, Aeronaut Technol Res Div, 169-84 Gwahak Ro, Daejeon 34133, South Korea
[3] Korea Adv Inst Sci & Technol, Dept Aerosp Engn, 291 Daehak Ro, Daejeon 34141, South Korea
关键词
Cable suspension and balance system; Support interference; Vibration; Wind tunnel test;
D O I
10.1007/s42405-021-00390-y
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
A cable-driven model support concept is suggested and implemented in this paper. In this case, it is a cable suspension and balance system (CSBS), which has the advantages of low support interference and reduced vibration responses for effective wind tunnel tests. This system is designed for both model motion control and aerodynamic load measurements. In the CSBS, the required position or the attitude of the test model is realized by eight motors, which adjust the length, velocity, and acceleration of the corresponding cables. Aerodynamic load measurements are accomplished by a cable balance consisting of eight load cells connected to the assigned cables. The motion responses and load measurement outputs were in good agreement with the reference data. The effectiveness of the CSBS against aerodynamic interference and vibration is experimentally demonstrated through comparative tests with a rear sting and a crescent sting support (CSS). The advantages of the CSBS are examined through several wind tunnel tests of a NACA0015 airfoil model. The cable support of the CSBS clearly showed less aerodynamic interference than the rear sting with a CSS, judging from the drag coefficient profile. Additionally, the CSBS showed excellent vibration suppression characteristics at all angles of attack.
引用
收藏
页码:1048 / 1061
页数:14
相关论文
共 50 条
  • [32] Method to eliminate the interference of model support in automotive wind tunnel
    Zhang, Ying-Chao
    Zhang, Zhe
    Li, Jie
    Shiyan Liuti Lixue/Journal of Experiments in Fluid Mechanics, 2011, 25 (03): : 16 - 19
  • [33] Adaptive sliding mode control of wire-driven parallel suspension system in wind tunnel tests
    Liu J.
    Wang X.-G.
    Wang Y.-Q.
    Lin Q.
    Kongzhi Lilun Yu Yingyong/Control Theory and Applications, 2019, 36 (09): : 1477 - 1485
  • [34] COUPLING VIBRATION OF WIND-VEHICLE-GUIDEWAY SYSTEM FOR LONG SPAN CABLE-STAYED-SUSPENSION SYSTEMS
    Li, Y. L.
    Zhang, M. J.
    Wang, B.
    Liao, H. L.
    ENVIRONMENTAL VIBRATIONS: PREDICTION, MONITORING, MITIGATION AND EVALUATION, VOLS I AND II, 2009, : 1233 - 1239
  • [35] Investigation of wind-induced dynamics of a cable net roof with aeroelastic wind tunnel tests
    Rizzo, Fabio
    Kopp, Gregory A.
    Giaccu, Gian Felice
    ENGINEERING STRUCTURES, 2021, 229
  • [36] Identification and experimental study on multidimensional vibration characteristics of wind tunnel model-support system
    Sun, Chenjin
    Zhou, Mengde
    Ren, Yuhang
    Zhang, Xinyu
    Zhao, Qi
    Yan, Huanhuan
    Liu, Wei
    Zhendong yu Chongji/Journal of Vibration and Shock, 2024, 43 (03): : 218 - 226
  • [37] SUPERCONDUCTING ELECTROMAGNETS FOR LARGE WIND-TUNNEL MAGNETIC SUSPENSION AND BALANCE SYSTEMS
    BOOM, RW
    EYSSA, YM
    MCINTOSH, GE
    ABDELSALAM, MK
    SCURLOCK, RG
    WU, YY
    GOODYER, MJ
    BALCEREK, K
    ESKINS, J
    BRITCHER, CP
    IEEE TRANSACTIONS ON MAGNETICS, 1985, 21 (02) : 444 - 447
  • [38] DYNAMIC WIND-TUNNEL TESTS OF THE SIMULATED SHUTTLE EXTERNAL CABLE TRAYS
    ORLIKRUCKEMANN, KJ
    LABERGE, JG
    JOURNAL OF SPACECRAFT AND ROCKETS, 1983, 20 (01) : 5 - 10
  • [39] ANALYSIS OF STATIC AND DYNAMIC WIND-TUNNEL TESTS OF THE SHUTTLE CABLE TRAYS
    REDING, JP
    ERICSSON, LE
    JOURNAL OF SPACECRAFT AND ROCKETS, 1982, 19 (05) : 412 - 418
  • [40] Wind tunnel tests on safety against wind vibrations at the suspension bridge Cologne-Rodenkirchen
    Barbre, Rudolf
    Ibing, Rolf
    STAHLBAU, 2018, 87 (07) : 731 - 739