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Oil-water two-phase flow measurement with combined ultrasonic transducer and electrical sensors

机译:结合超声换能器和电传感器的油水两相流量测量

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A combination of ultrasonic transducers operated in continuous mode and a conductance/capacitance sensor (UTCC) is proposed to estimate the individual flow velocities in oil-water two-phase flows. Based on the Doppler effect, the transducers measure the flow velocity and the conductance/capacitance sensor estimates the phase fraction. A set of theoretical correlations based on the boundary layer models of the oil-water two-phase flow was proposed to describe the velocity profile. The models were separately established for the dispersion flow and the separate flow. The superficial flow velocity of each phase is calculated with the velocity measured in the sampling volume of the ultrasonic transducer with the phase fraction through the velocity profile models. The measuring system of the UTCC was designed and experimentally verified on a multiphase flow loop. The results indicate that the proposed system and correlations estimate the overall flow velocity at an uncertainty of U-J = 0.038 m s(-1), and the water superficial velocity at U-Jw = 0.026 m s(-1), and oil superficial velocity at U-Jo = 0.034 m s(-1). The influencing factors of uncertainty were analyzed.
机译:提出了以连续模式操作的超声换能器与电导/电容传感器(UTCC)的组合,以估算油水两相流中的各个流速。基于多普勒效应,换​​能器测量流速,电导/电容传感器估计相位分数。提出了一套基于油水两相流边界层模型的理论相关性来描述速度剖面。分别为分散流和分离流建立模型。通过速度分布模型,利用在超声换能器的采样体积中测得的速度以及相分数,计算出每个相的表面流速。 UTCC的测量系统是在多相流回路上设计并通过实验验证的。结果表明,所提出的系统和相关性估计在不确定性为UJ = 0.038 ms(-1)时的总流速,在U-Jw为0.026 ms(-1)时的水表面速度,以及在U处的油表面速度-Jo = 0.034 ms(-1)。分析了不确定性的影响因素。

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