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Void Fraction Measurement of Oil-Gas-Water Three-Phase Flow Using Mutually Perpendicular Ultrasonic Sensor

机译:使用相互垂直超声波传感器的油气 - 水三相流量的空隙分数测量

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The complex flow structure and interfacial effect in oil-gas-water three-phase flow have made the void fraction measurement a challenging problem. This paper reports on the void fraction measurement of oil-gas-water three-phase flow using a mutually perpendicular ultrasonic sensor (MPUS). Two pairs of ultrasonic probes are installed on the same pipe section to measure the void fraction. With the aid of the finite element method, we first optimize the emission frequency and geometry parameters of MPUS through examining its sensitivity field distribution. Afterward, the oil-gas-water three-phase flow experiment was carried out in a vertical upward pipe with a diameter of 20 mm to investigate the responses of MPUS. Then, the void fraction prediction models associated with flow patterns (bubble flow, slug flow, and churn flow) were established. Compared to the quick closing valves, MPUS obtained a favorable accuracy for void fraction measurement with absolute average percentage error equaling 8.983%, which indicates that MPUS can satisfactorily measure the void fraction of oil-gas-water three-phase flow.
机译:油气 - 水三相流动的复杂流动结构和界面效应使得空隙分数测量成为一个具有挑战性的问题。本文使用相互垂直的超声波传感器(MPU)报道了油气水三相流量的空隙分数测量。两对超声波探头安装在同一管道上,以测量空隙率。借助有限元方法,我们首先通过检查其灵敏度场分布来优化MPU的发射频率和几何参数。之后,油气 - 水三相流动实验在垂直向上管道中进行,直径为20mm,以研究MPU的反应。然后,建立了与流动图案(气泡流,块流和搅拌流)相关的空隙部分预测模型。与快速关闭阀相比,MPU具有良好的精度,可实现空隙分数测量,绝对平均百分比误差等于8.983%,这表明MPU可以令人满意地测量油气水 - 水三相流动的空隙率。

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