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Prediction of flooding gas velocity in gas-liquid counter-current two-phase flow in inclined pipes

机译:斜管内气液逆流两相流中驱油速度的预测

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The purpose of the experimental study is to investigate the effects of pipe inclination, pipe length, pipe diameter and surface tension of the working liquid on the onset of flooding of gas-liquid adiabatic counter-current two-phase flow in inclined pipes. Flooding in inclined pipes were observed by using the combination of visual observation, measurement of discharged liquid flow rate and time variation of liquid hold-up. And it was defined as the maximum air flow rate at which the discharged liquid flow rate is equal to the inlet liquid flow rate. As a result we proposed a correlation to predict the flooding gas velocity in inclined pipes under a given liquid flow rate, and the predictions agreed well with the experimental observations.
机译:实验研究的目的是研究管道倾角,管道长度,管道直径和工作液体的表面张力对倾斜管道中气液绝热逆流两相流溢流的影响。通过目测,排液流量测量和持液时间变化的组合观察斜管中的溢流情况。并且将其定义为排出的液体流量等于入口的液体流量的最大空气流量。因此,我们提出了一种相关性,可以在给定的液体流速下预测斜管中的驱油速度,该预测与实验观察结果吻合得很好。

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