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Differential pressure method for measuring water holdup of oil-water two-phase flow with low velocity and high water-cut

机译:低速高含水油水两相流持水率的压差法

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This paper is devoted to measuring water holdup of oil-water two-phase flow with low velocity and high water-cut through differential pressure method. At first, we carry out vertical upward oil-water two-phase flow experiment in a 20 mm inner diameter pipe to obtain the response of differential pressure sensor, and use Vertical Multiple Electrode Array conductance sensor (VMEA) as well as Adaptive Optimal Kernel Time-Frequency Representation (AOK TFR) algorithm to identify three different flow patterns, i.e., dispersed oil-in-water slug flow (D OS/W), dispersed oil-in-water flow (D O/W) and very fine dispersed oil-in-water flow (VFD O/W). Then the water holdup is extracted from the differential pressure sensor response by calculating frictional gradient loss, and the water holdup measured is compared with the set value by using the method of quick closing valve. Finally, we using drift-flux model predict the individual phase superficial velocities based on the flow pattern classification and water holdup. The research results show that differential pressure method proves to be an effective approach to investigate flow characteristics in oil-water two-phase flow with low velocity and high water-cut. (C) 2015 Elsevier Inc. All rights reserved.
机译:本文致力于通过差压法测量低速高含水率的油水两相流持水率。首先,我们在内径为20 mm的管道中进行垂直向上的油水两相流动实验,以获得压差传感器的响应,并使用垂直多电极阵列电导传感器(VMEA)以及自适应最佳内核时间-频率表示(AOK TFR)算法,用于识别三种不同的流动模式,即分散的水包油塞流(D OS / W),分散的水包油流(DO / W)和非常细的分散油-水中流量(VFD O / W)。然后,通过计算摩擦梯度损失,从压差传感器响应中提取出持水率,并使用快速关闭阀的方法将测得的持水率与设定值进行比较。最后,我们使用漂移-通量模型基于流型分类和持水量来预测各个相的表面速度。研究结果表明,差压法是研究低速高含水率油水两相流流动特性的有效方法。 (C)2015 Elsevier Inc.保留所有权利。

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