A Novel Experimental Setup for Multiparameter Aeroelastic Wind Tunnel Tests

被引:7
|
作者
Gjerek, B. [1 ]
Drazumeric, R. [1 ]
Kosel, F. [1 ]
机构
[1] Univ Ljubljana, Fac Mech Engn, Ljubljana 1000, Slovenia
关键词
Aeroelasticity; Flutter; Divergence; Automated Measurement; Wind Tunnel Tests; FLUTTER; SECTION;
D O I
10.1111/j.1747-1567.2012.00839.x
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
A comprehensive experimental approach to the problem of determining static stability boundary (divergence) or dynamic stability boundary (flutter) of a given multiparameter aeroelastic system in a low speed wind tunnel is presented. The experimental setup with the corresponding measurement algorithm is based on the well-known theoretical model of an elastically supported typical wing section with two degrees of freedom. The design of the experimental system makes it possible to vary structural parameters within the determined parameter space. An automated measurement algorithm for determination of static or dynamic stability boundary by monitoring the aeroelastic system response to an initial impulse in the time domain is developed. The multiparameter experimental results of the case study using a NACA 0012 airfoil are compared to the analytical solutions of the theoretical model. The comparison shows that the experimental setup represents a reliable platform for aeroelastic wind tunnel test purposes. In addition, series of experiments were conducted to investigate the effect of airfoil thickness distribution on dynamic and static stability boundary. The results are compared to those of the NACA 0012 airfoil.
引用
收藏
页码:30 / 43
页数:14
相关论文
共 50 条
  • [21] Scaled wind turbine setup in a turbulent wind tunnel
    Berger, Frederik
    Kroeger, Lars
    Onnen, David
    Petrovic, Vlaho
    Kuehn, Martin
    EERA DEEPWIND'2018, 15TH DEEP SEA OFFSHORE WIND R&D CONFERENCE, 2018, 1104
  • [22] Wind tunnel tests
    Ringland, G
    WORLD TODAY, 1998, 54 (12): : 309 - 309
  • [23] Hardware-In-the-Loop experimental setup development for a guided projectile in a wind tunnel
    Strub, Guillaume
    Gassmann, Vincent
    Theodoulis, Spilios
    Dobre, Simona
    Basset, Michel
    2014 IEEE/ASME INTERNATIONAL CONFERENCE ON ADVANCED INTELLIGENT MECHATRONICS (AIM), 2014, : 458 - 463
  • [24] Modelling of tuned mass dampers for wind-tunnel tests on a full-bridge aeroelastic model
    Larose, G.L.
    Larsen, A.
    Svensson, E.
    Journal of Wind Engineering and Industrial Aerodynamics, 1995, 54-55 : 427 - 437
  • [25] MODELING OF TUNED MASS DAMPERS FOR WIND-TUNNEL TESTS ON A FULL-BRIDGE AEROELASTIC MODEL
    LAROSE, GL
    LARSEN, A
    SVENSSON, E
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 1995, 54 : 427 - 437
  • [26] Investigation on wind tunnel tests of a full aeroelastic model of electrical transmission tower-line system
    Liang, Shuguo
    Zou, Lianghao
    Wang, Dahai
    Cao, Hong
    ENGINEERING STRUCTURES, 2015, 85 : 63 - 72
  • [27] Modelling of tuned mass dampers for wind-tunnel tests on a full-bridge aeroelastic model
    Larose, G.L.
    Larsen, A.
    Svensson, E.
    Journal of Wind Engineering and Industrial Aerodynamics, 1995, 54-55 : 427 - 437
  • [28] Wind tunnel test of a whirl flutter aeroelastic demonstrator
    Cecrdle, Jiri
    Vich, Ondrej
    Malinek, Petr
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2019, 233 (03) : 969 - 977
  • [29] Wind-induced vibration of four parallel steel box girder bridges employed aeroelastic model wind tunnel tests
    Xia W.
    Luo Y.
    Huang Z.
    Wen Q.
    Hua X.
    Journal of Railway Science and Engineering, 2023, 20 (07) : 2551 - 2560
  • [30] Investigation of torsional aeroelastic effects on high-rise buildings using forced vibration wind tunnel tests
    Zou, Lianghao
    Li, Feng
    Song, Jie
    Shi, Tianyi
    Liang, Shuguo
    Mercan, Oya
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2020, 200 (200)