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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Cross-correlation velocity measurement of horizontal oil-water two-phase flow by using parallel-wire capacitance probe
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Cross-correlation velocity measurement of horizontal oil-water two-phase flow by using parallel-wire capacitance probe

机译:利用平行线电容探针测量水平油水两相流的互相关速度

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摘要

Horizontal oil-water two-phase flow widely exists in petroleum industry. The flow measurement in oil well, which is one of key production logging technologies, is becoming more and more important for horizontal well production management. The complicated flow structures happened in horizontal oil-water two-phase flow bring a great challenge to flow measurement. We employ a parallel-wire capacitance probe (PWCP) to compose the cross-correlation velocity measurement. Firstly, we investigate the distribution of sensitivity field of PWCP by using finite element method (FEM). Then, we carry out the flow loop test to figure out the cross-correlation velocity from the voltage fluctuation signals measured from upstream and downstream probes. The results indicate that the cross-correlation characteristic of PWCPs depends on the oil-water flow structures. Finally, we use the kinematic wave model to predict the homogeneous velocity for six different horizontal oil-water two-phase flow patterns.
机译:石油工业中广泛存在水平油水两相流。油井的流量测量是关键的生产测井技术之一,对于水平井的生产管理越来越重要。水平油水两相流中发生的复杂流动结构给流量测量带来了巨大挑战。我们采用平行线电容探针(PWCP)来进行互相关速度测量。首先,我们利用有限元方法研究了PWCP灵敏度场的分布。然后,我们进行流动回路测试,以从上游和下游探头测得的电压波动信号中找出互相关速度。结果表明,PWCP的互相关特性取决于油水流动结构。最后,我们使用运动波模型来预测六个不同的水平油水两相流型的均匀速度。

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