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TWO-PHASE FLOW ACROSS VERTICALLY SPLIT U-JUNCTIONS

机译:垂直分裂U结的两相流

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A two-phase flow across a vertically split U-type junction inside two 6.7 mm smooth tubes having curvature ratios of 3 and 7 was visually observed. The range of mass flux is 100-700 kg/m~2·s. The gas mass flux in the upper and lower tubes is generally increased with the rise of gas quality while the distribution of liquid mass flux reveals a minimum and a maximum phenomenon. The gas mass flux in the lower tube is continuously increased with gas quality and is generally lower than that in the upper tube. However, its value may exceed that of its counterpart at the upper tube when semi-annular or annular flow takes place (x > 0.1). The surprising results can be attributed to the negligible influence of buoyancy, the airflow dragged by the gravity-induced liquid flow in the lower tube, and the liquid obstacle in the upper leg hindering the airflow path.
机译:目视观察到穿过两个曲率比为3和7的6.7 mm光滑管内垂直分开的U型结的两相流。质量通量范围为100-700 kg / m〜2·s。上下管中的气体通量通常随着气体质量的提高而增加,而液体通量的分布则显示出最小和最大的现象。下管中的气体质量通量随气体质量而持续增加,并且通常低于上管中的气体质量通量。但是,当发生半环形或环形流动时,其值可能会超过其在上管处的对应值(x> 0.1)。令人惊讶的结果可以归因于浮力的影响可忽略不计,下管中的重力感应液体流拖曳的气流以及大腿中的液体障碍物阻碍了气流路径。

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