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Turbulence Modeling Applied to Flow over a Hydraulic Ball Check Valve Leonid Grinis

机译:湍流建模应用于液压球式止回阀的流动Leonid Grinis

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摘要

This paper describes an experimental, theoretical model, and a numerical study of concentrated vortex flow past a ball in a hydraulic check valve. The phenomenon of the rotation of the ball around the axis of the device, through which liquid flows, has been found. That is, vibration is caused by the rotation of the ball in the check valve. We observe the rotation of the ball around the longitudinal axis of the check valve. This rotation is induced by vortex shedding from the ball. We will discuss computational simulation and experimental investigations of this strong ball rotation. The frequency of the ball vibration and interaction with the check valve wall has been measured as a function of a wide range of Reynolds numbers. The validity of the computational simulation and of the assumptions on which it is based has been proved experimentally. This study demonstrates the possibility of controlling the vibrations in a hydraulic system and proves to be a very effective suppression of the self-excited vibration.
机译:本文描述了一个实验性的理论模型,并对液压止回阀中流过球的集中涡流进行了数值研究。已经发现了球绕装置的轴线旋转的现象,液体流过该装置。即,由止回阀中的球的旋转引起振动。我们观察到球绕止回阀的纵轴旋转。这种旋转是由球上的涡流脱落引起的。我们将讨论这种强力球旋转的计算仿真和实验研究。球的振动频率以及与止回阀壁的相互作用已根据广泛的雷诺数进行了测量。实验证明了计算仿真及其所基于的假设的有效性。这项研究证明了控制液压系统中振动的可能性,并被证明是对自激振动的非常有效的抑制。

著录项

  • 来源
    《Engineering》 |2013年第8期|685-691|共7页
  • 作者单位

    Mechanical Engineering, Sami Shamoon College of Engineering, Beer-Sheva, Israel;

    Mechanical Engineering, Sami Shamoon College of Engineering, Beer-Sheva, Israel;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Check-Valve; Vibration; Vortex Shedding;

    机译:单向阀振动;涡流脱落;

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