...
首页> 外文期刊>Journal of Pressure Vessel Technology >A Study on the Hydrodynamic Load in a Water Pool When Discharged Air Forms a Bubble Cloud (PVP2006-ICPVT11-93281)
【24h】

A Study on the Hydrodynamic Load in a Water Pool When Discharged Air Forms a Bubble Cloud (PVP2006-ICPVT11-93281)

机译:排出的空气形成气泡云时水池中的水动力负荷研究(PVP2006-ICPVT11-93281)

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents a numerical and qualitative study on the expected hydrodynamic load-reducing effect of bubbly medium near a volumetrically oscillating bubble. In this study, the bubble or bubble cloud is assumed to be spherically symmetric, and its motion is analyzed as a one-dimensional compressible two-phase flow in the radial direction in spherical coordinates. We adopted the cubic interpolated pseudoparticle combined unified procedure method, which is a unified analysis method for both compressible and incompressible fluids proposed by Yabe and Wang (1991, "Unidied Numerical Procedure for Compressible and Incompressible Fluid," J. Phys. Soc. Jpn., 60, pp. 2105-2108) in order to treat interaction among gas, liquid, and two-phase medium and to avoid large numerical dissipation at density discontinuities. To verify the analysis program we developed, we analyzed free oscillations of a bubble with a unity void fraction and of a bubble cloud with an initial void fraction of 0.5, and found that the natural frequency from numerical results is well reproduced with an error of 0.9% for the bubble and 5% for the bubble cloud as compared to those obtained on a theoretical basis. Using this method, we analyzed the free oscillation of a bubble cloud in which a bubble with a unity void fraction is covered by a bubbly medium layer with an initial void fraction of 0.5. Numerical results show that the amplitude of pressure oscillation inside the bubble is about halved and that a higher mode of oscillation appears when a bubbly medium layer covers the bubble. The measured results from a blowdown test we previously reported also show a similar higher mode of oscillation. The amplitude of pressure oscillation in the water region was apparently reduced when a thick bubbly medium layer covers the bubble. Thus, if the bubbly medium are ejected from sparger holes prior to the ejection of a high-pressure bubble, the bubbly medium might reduce the hydrodynamic load induced in a water pool made by volumetric oscillation of the bubble.
机译:本文对体积振荡气泡附近的气泡状介质的预期水动力减荷效果进行了数值和定性研究。在本研究中,假设气泡或气泡云是球对称的,并且将其运动分析为球坐标中径向上的一维可压缩两相流。我们采用了三次插值伪粒子组合统一过程方法,这是Yabe和Wang(1991,J。Phys。Soc。Jpn。 (第60页,第2105-2108页)以处理气体,液体和两相介质之间的相互作用,并避免在密度不连续处产生较大的数值耗散。为了验证我们开发的分析程序,我们分析了具有统一空隙率的气泡和具有初始空隙率0.5的气泡云的自由振动,发现数值结果的固有频率可以很好地再现,误差为0.9与理论上获得的值相比,气泡的百分比为5%,气泡云的百分比为5%。使用这种方法,我们分析了气泡云的自由振荡,在该气泡中,具有统一空隙率的气泡被初始空隙率为0.5的气泡状介质层覆盖。数值结果表明,气泡内部的压力振荡幅度大约减半,并且当气泡中间层覆盖气泡时,出现更高的振荡模式。我们先前报道的排污测试的测量结果也显示出类似的更高振荡模式。当厚的气泡状介质层覆盖气泡时,水区域中压力振荡的幅度明显减小。因此,如果在喷射高压气泡之前从喷射孔中喷射出气泡状介质,则气泡状介质可能会减小由气泡的体积振荡引起的水池中引起的流体动力负荷。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号