An investigation of the aerodynamic and ventilation characteristics of poultry transport vehicles .2. Wind tunnel experiments

被引:14
|
作者
Baker, CJ [1 ]
Dalley, S [1 ]
Yang, X [1 ]
Kettlewell, P [1 ]
Hoxey, R [1 ]
机构
[1] SILSOE RES INST,SILSOE,BEDS,ENGLAND
来源
关键词
D O I
10.1006/jaer.1996.0083
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
This is the second part of a three part paper that reports the results of an investigation into the aerodynamic and ventilation characteristics of poultry transport vehicles. In Part 1 the results of full scale aerodynamic measurements were described. In this paper the results of an extensive series of wind tunnel effects are described and discussed, and in Part 3 a method of calculating internal flow conditions is set out, and a comparison made between the results of this method and full scale internal environmental measurements. In this paper results are presented for the pressure distributions around a poultry transport vehicle over a wide yaw and flow range, together with some measurement of the external vehicle flow field and some flow visualisation at zero yaw. A comparison with the full scale measurements of Part 1 suggest that the model scale data is reasonably accurate, except near the front of the vehicle where extensive flow separation occurs. Overall, it is concluded that the results are adequate for use as boundary conditions in the calculation method set out in Part 3. (C) 1996 Silsoe Research Institute.
引用
收藏
页码:97 / 113
页数:17
相关论文
共 50 条
  • [31] On the Effects of Wind Tunnel Floor Tangential Blowing on the Aerodynamic Forces of Passenger Vehicles
    Ljungskog E.
    Sebben S.
    Broniewicz A.
    Landström C.
    SAE International Journal of Passenger Cars - Mechanical Systems, 2017, 10 (02): : 591 - 599
  • [32] Study on airflow characteristics inside and outside a cross-ventilation model, and ventilation flow rates using wind tunnel experiments
    Ohba, M
    Irie, K
    Kurabuchi, T
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2001, 89 (14-15) : 1513 - 1524
  • [33] Aerodynamic experiments in large-size wind tunnel can be realized in common small-size wind tunnel
    Chen, Mo
    Ma, Han-Dong
    Yuhang Xuebao/Journal of Astronautics, 2005, 26 (02): : 131 - 136
  • [34] On the Determination of the Aerodynamic Damping of Wind Turbines Using the Forced Oscillations Method in Wind Tunnel Experiments
    Fontecha, Robert
    Kemper, Frank
    Feldmann, Markus
    ENERGIES, 2019, 12 (12)
  • [35] Wind tunnel investigation on influence of fluctuating wind direction on cross natural ventilation
    Ji, Liang
    Tan, Hongwei
    Kato, Shinsuke
    Bu, Zhen
    Takahashi, Takeo
    BUILDING AND ENVIRONMENT, 2011, 46 (12) : 2490 - 2499
  • [36] Wind tunnel investigation of the aerodynamic response of two 15 MW floating wind turbines
    Fontanella, Alessandro
    Facchinetti, Alan
    Di Carlo, Simone
    Belloli, Marco
    WIND ENERGY SCIENCE, 2022, 7 (04) : 1711 - 1729
  • [37] Identification of Unsteady Aerodynamic Forces from Forced Motion Wind Tunnel Experiments
    Ertveldt, J.
    Pintelon, R.
    Vanlanduit, S.
    AIAA JOURNAL, 2016, 54 (10) : 3265 - 3273
  • [38] Identification of unsteady aerodynamic forces from forced motion wind tunnel experiments
    1600, AIAA International, 12700 Sunrise Valley Drive, Suite 200Reston, VA, Virginia, Virginia 20191-5807, United States (54):
  • [39] THE ICING OF AN UNHEATED, NONROTATING CYLINDER .2. ICING WIND-TUNNEL EXPERIMENTS
    LOZOWSKI, EP
    STALLABRASS, JR
    HEARTY, PF
    JOURNAL OF CLIMATE AND APPLIED METEOROLOGY, 1983, 22 (12): : 2063 - 2074
  • [40] Wind tunnel experiment of ventilation rate and airflow characteristics in natural ventilation induced by wind and buoyancy effects
    Jiang, Zitao
    Kobayashi, Tomohiro
    Yamanaka, Toshio
    Sandberg, Mats
    Yamasawa, Haruna
    Miyazawa, Shohei
    Miura, Ryuto
    INTERNATIONAL JOURNAL OF VENTILATION, 2024,