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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Turbulent shear stress profiles in a bubbly channel flow assessed by particle tracking velocimetry
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Turbulent shear stress profiles in a bubbly channel flow assessed by particle tracking velocimetry

机译:通过粒子跟踪测速法评估气泡通道流动中的湍流剪切应力分布

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摘要

Particle tracking velocimetry (PTV) is applied to a bubbly two-phase turbulent flow in a horizontal channel at Re = 2 x 10(4) to investigate the turbulent shear stress profile which had been altered by the presence of bubbles. Streamwise and vertical velocity components of liquid phase are obtained using a shallow focus imaging method under backlight photography. The size of bubbles injected through a porous plate in the channel ranged from 0.3 to 1.5 mm diameter, and the bubbles show a significant backward slip velocity relative to liquid flow. After bubbles and tracer particles are identified by binarizing the image, velocity of each phase and void fraction are profiled in a downstream region. The turbulent shear stress, which consists of three components in the bubbly two-phase flow, is computed by analysis of PTV data. The result shows that the fluctuation correlation between local void fraction and vertical liquid velocity provides a negative shear stress component which promotes frictional drag reduction in the bubbly two-phase layer. The paper also deals with the source of the negative shear stress considering bubble's relative motion to liquid.
机译:将粒子跟踪测速(PTV)应用于Re = 2 x 10(4)的水平通道中的气泡状两相湍流,以研究由于存在气泡而改变的湍流剪切应力曲线。使用浅焦点成像方法在背光照相下获得液相的沿流方向和垂直方向的速度分量。通过多孔板在通道中注入的气泡的大小在直径0.3到1.5 mm的范围内,并且相对于液体流动,气泡显示出显着的向后滑动速度。通过对图像进行二值化识别出气泡和示踪剂颗粒后,在下游区域分析了每个相的速度和空隙率。通过分析PTV数据,计算出了气泡状两相流中由三部分组成的湍流切应力。结果表明,局部空隙率与垂直液体速度之间的波动关系提供了负切应力分量,该负切应力分量促进了气泡状两相层中的摩擦阻力减小。考虑气泡相对于液体的相对运动,本文还讨论了负剪应力的来源。

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