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Investigation of vertical slug flow with advanced two-phase flow instrumentation

机译:先进的两相流仪表研究垂直段塞流

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Extensive experiments of vertical slug flow were carried out with an electromagnetic flowmeter and an impedance void-meter in an air--water two-phase experimental loop. The basic principles of these instruments in vertical slug flow measurements are discussed. Time series of the liquid velocity and the impedance were separated into two parts corresponding to the Taylor bubble and the liquid slug. Characteristics of slug flow, such as the void fractions, probabilities and lengths of the Taylor bubble and liquid slug, slug unit velocity, area-averaged liquid velocity, and liquid film velocity of the Taylor bubble tail, etc., were obtained. For the first time, the area-averaged liquid velocity of slug flow was revealed by the electromagnetic flowmeter. It is realized that the void fraction of the liquid slug is determined by the turbulent intensity due to the relative liquid motion between the Taylor bubble tail region and its wake region. A correlation of the void fraction of the liquid slug is developed based on experimental results obtained from a test section with 50.8 mm i.d. The results of this study suggest a promising improvement in understanding of vertical slug flow.
机译:在气水两相实验回路中使用电磁流量计和阻抗空隙计进行了垂直段塞流的广泛实验。讨论了这些仪器在垂直塞流测量中的基本原理。液体速度和阻抗的时间序列分为两个部分,分别对应于泰勒气泡和液体团块。获得了塞流的特性,例如,空隙率,泰勒气泡和液塞的概率和长度,塞的单位速度,泰勒气泡尾部的面积平均液体速度和液膜速度等。电磁流量计首次揭示了团状流的面积平均液体速度。已经认识到,由于泰勒气泡尾部区域与其尾流区域之间的相对液体运动,液体块的空隙率由湍流强度确定。基于从50.8mm i.d的测试部分获得的实验结果,得出液状塞的空隙率的相关性。这项研究的结果表明,在理解垂直段塞流方面有希望的改进。

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