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Air–water flow in a vertical pipe: experimental study of air bubbles in the vicinity of the wall

机译:垂直管中的空气-水流:壁附近气泡的实验研究

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摘要

This study deals with the influence of bubbles on a vertical air–water pipe flow, for gas-lift applications. The effect of changing the bubble size is of particular interest as it has been shown to affect the pressure drop over the pipe. Local measurements on the bubbles characteristics in the wall region were performed, using standard techniques, such as high-speed video recording and optical fibre probe, and more specific techniques, such as two-phase hot film anemometry for the wall shear stress and conductivity measurement for the thickness of the liquid film at the wall. The injection of macroscopic air bubbles in a pipe flow was shown to increase the wall shear stress. Bubbles travelling close to the wall create a periodic perturbation. The injection of small bubbles amplifies this effect, because they tend to move in the wall region; hence, more bubbles are travelling close to the wall. A simple analysis based on a two-fluid set of equations emphasised the importance of the local gas fraction fluctuations on the wall shear stress.
机译:这项研究研究了气泡在气举应用中对垂直空气水管流动的影响。改变气泡尺寸的效果尤其令人关注,因为已显示出气泡尺寸会影响管道上的压降。使用标准技术(例如高速视频记录和光纤探针)以及更具体的技术(例如用于壁剪切应力和电导率测量的两相热膜风速计)对壁区域中的气泡特性进行局部测量壁上液膜的厚度。显示出在管道流中注入宏观气泡会增加壁面剪应力。靠近壁的气泡会产生周期性的扰动。小气泡的注入会放大这种效果,因为它们倾向于在壁区域中移动。因此,更多的气泡正在靠近壁面传播。基于双流体方程组的简单分析强调了局部气体分数波动对壁面剪应力的重要性。

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  • 来源
    《Experiments in Fluids》 |2008年第2期|357-370|共14页
  • 作者单位

    J.M. Burgerscentrum for Fluid Mechanics Delft University of Technology Multi-Scale Physics Prins Bernhardlann 6 2628 BW Delft The Netherlands;

    J.M. Burgerscentrum for Fluid Mechanics Delft University of Technology Multi-Scale Physics Prins Bernhardlann 6 2628 BW Delft The Netherlands;

    J.M. Burgerscentrum for Fluid Mechanics Delft University of Technology Laboratory for Aero- and Hydrodynamics Mekelweg 2 2628 CD Delft The Netherlands;

    J.M. Burgerscentrum for Fluid Mechanics Delft University of Technology Multi-Scale Physics Prins Bernhardlann 6 2628 BW Delft The Netherlands;

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