A device to achieve low Reynolds numbers in an open surface water channel

被引:0
|
作者
Alexander Radi
David Lo Jacono
John Sheridan
机构
[1] Monash University,FLAIR, Department of Mechanical and Aerospace Engineering
[2] Université de Toulouse,INPT, UPS, IMFT (Institut de Mécanique des Fluides de Toulouse)
[3] IMFT,CNRS
来源
Experiments in Fluids | 2014年 / 55卷
关键词
Particle Image Velocimetry; Turbulence Intensity; Streamwise Velocity; Strouhal Number; Bottom Plate;
D O I
暂无
中图分类号
学科分类号
摘要
When investigating flow structures, and especially flow transitions, research projects often seek to increase insight using complementary numerical and physical experiments. Obtaining exact Reynolds number correspondence can frequently be difficult in experiments, particularly when relatively low values are required. Often, available test facilities were designed and optimised for a specific velocity range, meaning they have restrictions on the minimum flow velocity. This study describes a device to reduce the flow velocity locally in an open surface water channel. The underlying idea is to divert a controlled fraction of the incoming flow from the working section by increasing the pressure there, resulting in reduced velocity. This idea is realised using a ‘sub-channel’ that can be inserted into the main test chamber, with a variable porosity perforated screen at its downstream end. This study assesses and optimises the flow quality inside this structure, such as usable test section length, uniformity of the velocity profiles and turbulence intensity. The results demonstrate that the device creates high quality low Reynolds number flows, which is exemplified with the canonical circular cylinder in cross-flow.
引用
收藏
相关论文
共 50 条
  • [1] A device to achieve low Reynolds numbers in an open surface water channel
    Radi, Alexander
    Lo Jacono, David
    Sheridan, John
    EXPERIMENTS IN FLUIDS, 2014, 55 (05)
  • [2] Open channel boundary layer relaxation behind a forward facing step at low Reynolds numbers
    Tachie, MF
    Balachandar, R
    Bergstrom, DJ
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2001, 123 (03): : 539 - 544
  • [3] Droplet Impingement on a Surface at Low Reynolds Numbers
    Seksinsky, Drue
    Marshall, Jeffrey S.
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2021, 143 (02):
  • [4] Turbulence modification due to wave action at low Reynolds numbers in horizontal open-channel flow
    Stamatiou, E
    Chung, PMY
    Kawaji, M
    NUCLEAR TECHNOLOGY, 2001, 134 (01) : 84 - 96
  • [5] The Relaminarization Mechanisms of Turbulent Channel Flow at Low Reynolds Numbers
    O. Iida
    Y. Nagano
    Flow, Turbulence and Combustion, 1998, 60 : 193 - 213
  • [6] The relaminarization mechanisms of turbulent channel flow at low Reynolds numbers
    Iida, O
    Nagano, Y
    FLOW TURBULENCE AND COMBUSTION, 1998, 60 (02) : 193 - 213
  • [7] Nonlinear Elastic Instability in Channel Flows at Low Reynolds Numbers
    Pan, L.
    Morozov, A.
    Wagner, C.
    Arratia, P. E.
    PHYSICAL REVIEW LETTERS, 2013, 110 (17)
  • [8] Experimental and numerical determination of micropropulsion device efficiencies at low Reynolds numbers
    Ketsdever, AD
    Clabough, MT
    Gimelshein, SF
    Alexeenko, A
    AIAA JOURNAL, 2005, 43 (03) : 633 - 641
  • [9] Experimental and numerical determination of micropropulsion device efficiencies at low reynolds numbers
    Ketsdever, Andrew D.
    Clabough, Michael T.
    Gimelshein, Sergey F.
    Alexeenko, Alina
    AIAA Journal, 2005, 43 (03): : 633 - 641
  • [10] The undular hydraulic jump in turbulent open channel flow at large Reynolds numbers
    Grillhofer, W
    Schneider, W
    PHYSICS OF FLUIDS, 2003, 15 (03) : 730 - 735