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首页> 外文期刊>International Journal of Multiphase Flow >Wave characteristics in gas–oil two phase flow and large pipe diameter
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Wave characteristics in gas–oil two phase flow and large pipe diameter

机译:油气两相流中的波动特性和大管径

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An experimental study on wave characteristic has been carried out utilizing oil and air in a 0.1524 m ID horizontal and slightly inclined (±2°) pipe. A two-wire capacitance probe was developed to measure wave characteristics at the gas–liquid interface for two-phase flow in pipe. Wave celerity, amplitude and frequency have been determined from the capacitance time traces. The wave celerity increases with increase in superficial gas and liquid velocities. Although wave celerity was found to be dependent on inclination, the effect of inclination tends to diminish with increase in gas velocity. Wave amplitude and frequency did not show a particular trend for conditions studied. A new correlation for wave celerity for two-phase stratified flow using low viscosity fluids is proposed. The correlation was also compared with model prediction for wave celerity using mechanistic model proposed by others.
机译:在0.1524 m ID的水平和略微倾斜(±2°)的管道中,利用石油和空气进行了波浪特性的实验研究。开发了一种两线电容探头,以测量管道两相流在气液界面处的波特性。波速,幅度和频率已根据电容时间曲线确定。波速随着表观气体和液体速度的增加而增加。尽管发现波速取决于倾斜度,但是倾斜度的影响倾向于随着气体速度的增加而减小。对于所研究的条件,波幅和频率没有显示出特定的趋势。提出了一种使用低粘度流体的两相分层流波速的新相关性。还将相关性与使用他人提出的机理模型的波浪速度模型预测进行了比较。

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