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Electrical Resistance Tomography Sensor for Highly Conductive Oil-Water Two-Phase Flow Measurement

机译:电阻层析成像传感器,用于高导电油水两相流测量

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Oil-water two-phase flows are encountered in various process industries, such as petroleum and chemical. The measurement of oil volume fraction and its distribution is of particular importance for managing oil production and water disposal and/or water reinjection. The water phase in these environments always has high electrical conductivity, which incurs significant difficulties for oil volume fraction measurement using electrical resistance tomography (ERT). In this paper, a method of solving this problem is introduced. A pilot plant scale flow loop at TUV NEL Ltd. was used to measure oil distribution and oil volume fraction in the range of 0-0.4. The total volumetric flow rate of oil and water was 30, 60, and 90 m3/h. High-electrical conductivity of water in 27.6 mS/cm was applied as continuous phase. The measurement results from ERT were validated by the readings of NEL's references and flow patterns were compared with visual observation, which demonstrated that ERT was able to visualize the oil phase distribution and monitor the local and overall oil volume fraction up to 0.4.
机译:油水两相流在石油和化工等各种过程工业中都会遇到。机油体积分数及其分布的测量对于管理机油生产,水处理和/或注水特别重要。在这些环境中,水相始终具有高电导率,这给使用电阻层析成像(ERT)进行油体积分数测量带来了巨大困难。本文介绍了一种解决该问题的方法。使用TUV NEL Ltd.的中试规模工厂流量环来测量0-0.4范围内的油分布和油体积分数。油和水的总体积流量为30、60和90 m 3 / h。水以27.6 mS / cm的高电导率用作连续相。 ERT的测量结果通过NEL参考文献的读数得到验证,并且将流型与视觉观察进行了比较,这表明ERT能够可视化油相分布并监控局部和总油量分数(最高为0.4)。

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