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Experimental study on hydrodynamic characteristics of upward gas-liquid slug flow

机译:气液弹团向上流动的水动力特性试验研究

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摘要

To clarify the impacts of the hydrodynamic boundary layer and the diffusion boundary layer in the near wall zone on gas-liquid two-phase flow induced corrosion in pipelines, the hydrodynamic characteristics of fully developed gas-liquid slug flow in an upward tube are investigated with limiting diffusion current probes, conductivity probes and digital highspeed video system. The Taylor bubble and the falling liquid film characteristics are studied, the effects of various factors are examined, and the experimental results are compared with the data and models available in literature. The length of Taylor bubble, the local void fraction of the slug unit and the liquid slug, the shear stress and mass transfer coefficient in the near wall zone, are all increased with the increase of superficial gas velocity and decreased with the increase of superficial liquid velocity, whereas the length of liquid slug and the liquid slug frequency are changed contrarily. The alternate wall shear stress due to upward gas-liquid slug flow is considered to be one of the major causes for the corrosion production film fatigue cracking. A normalized formula for mass transfer coefficient is obtained based on the experimental data. (c) 2006 Elsevier Ltd. All rights reserved.
机译:为了阐明近壁区域的流体动力边界层和扩散边界层对管道中气液两相流诱发的腐蚀的影响,研究了充分发展的气液弹团流在向上管中的流体力学特性。限制扩散电流探头,电导率探头和数字高速视频系统。研究了泰勒气泡和下降的液膜特性,研究了各种因素的影响,并将实验结果与文献中的数据和模型进行了比较。泰勒气泡的长度,段塞单元和液塞的局部空隙率,壁附近区域的剪切应力和传质系数都随着表观气体速度的增加而增加,而随着表层液体的增加而减小。速度,而液团的长度和液团的频率却相反地变化。向上的气液塞流导致的交替壁面剪切应力被认为是腐蚀产生膜疲劳裂纹的主要原因之一。根据实验数据获得传质系数的归一化公式。 (c)2006 Elsevier Ltd.保留所有权利。

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