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首页> 外文期刊>IEEE sensors journal >The Performance Characteristics of Electromagnetic Flowmeter in Vertical Low-Velocity Oil-Water Two-Phase Flow
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The Performance Characteristics of Electromagnetic Flowmeter in Vertical Low-Velocity Oil-Water Two-Phase Flow

机译:垂直低速油水两相流中电磁流量计的性能特征

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Since the responses of the electromagnetic flowmeter (EMF) can be affected by the flow characteristics, the combination of the EMF and the void fraction meter is always necessary for the two-phase flow measurement. Combined with a plug-in conductance sensor array (PICSA), the measurement characteristics of the EMF in low-velocity oil-water two-phase flows are investigated in this study. In a low-velocity oil-water flow experiment, the water holdup of the oil-water flows at low velocity is measured by the PICSA. By introducing correction coefficients of the EMF under different flow patterns, the correlations between the EMF responses and the oil holdup are established to measure the water superficial velocity. Finally, the oil superficial velocity is accurately predicted by a drift flux model derived from the liquid holdup and mixture velocity. Satisfactory prediction accuracy for the oil superficial velocity can be achieved without the need to introduce oil velocity measurement as in previous studies.
机译:由于电磁流量计(EMF)的响应可以受到流动特性的影响,因此EMF和空隙分数计的组合总是需要两相流量测量所必需的。结合插入式电导传感器阵列(PICSA),在本研究中研究了低速油水两相流量的EMF中的测量特性。在低速油流量实验中,通过PICEA测量低速下油流量的水储存。通过在不同的流动模式下引入EMF的校正系数,建立了EMF响应与储油之间的相关性以测量水位速度。最后,通过从液体保持和混合速度衍生的漂移助熔剂模型精确预测油表速度。可以实现令人满意的油表速度预测准确性,而无需在先前的研究中引入油速度测量。

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