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首页> 外文期刊>Sensors and Actuators, A. Physical >A capacitive sensor system for the analysis of two-phase flows of oil and conductive water
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A capacitive sensor system for the analysis of two-phase flows of oil and conductive water

机译:电容式传感器系统,用于分析油和导电水的两相流

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摘要

A sensor system for the study of oil-water flow in pipes is proposed. The purpose is to estimate the area fraction occupied by each fluid in a given section of the pipe, taking advantage of the difference in dielectric permittivity between the fluids. The estimation is done by capacitance measurements between electrodes flush-mounted on the external surface of a nonconductive section of the pipe. A key contribution of the present work is to propose a solution to the problem of capacitive sensing in presence of conductive water which introduces parasitic coupling to stray elements outside the measurement section of the pipe. To this purpose it is proposed a novel sensor configuration that employs guard electrodes, coupled to a tailored electronic interface to drive the guard electrodes and amplify the measurement signal at 2 MHz. The sensor system has been designed, manufactured and tested in an experimental plant where flows of oil-tap water have been generated. The results obtained from the developed sensor system for different fluid fractions have been compared with those obtained by the Quick Closing Valve (QCV) technique adopted as a reference. Differences between the two methods below 3% have been found in the estimations of the normalized oil-area fraction.
机译:提出了一种用于研究管道中油水流动的传感器系统。目的是利用流体之间的介电常数的差异来估计管道给定截面中每种流体所占的面积分数。通过平齐安装在管道非导电部分外表面上的电极之间的电容测量来完成估算。本工作的关键贡献是提出一种解决方案,以解决存在导电水的情况下的电容感测问题,该问题将寄生耦合引入到管道测量段外部的杂散元件。为此,提出了一种新颖的传感器配置,其采用保护电极,该保护电极耦合到定制的电子接口以驱动保护电极并放大2 MHz的测量信号。该传感器系统已在产生自来水流动的实验工厂中进行了设计,制造和测试。从开发的传感器系统获得的针对不同流体分数的结果已与通过快速关闭阀(QCV)技术获得的结果进行了比较。两种方法之间的差异均低于3%,这是在归一化油区分数估算中发现的。

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