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Measurement of Gas-Liquid Two-Phase Flow in Micro-Pipes by a Capacitance Sensor

机译:用电容传感器测量微型管道中气液两相流

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摘要

A capacitance measurement system is developed for the measurement of gas-liquid two-phase flow in glass micro-pipes with inner diameters of 3.96, 2.65 and 1.56 mm, respectively. As a typical flow regime in a micro-pipe two-phase flow system, slug flow is chosen for this investigation. A capacitance sensor is designed and a high-resolution and high-speed capacitance measurement circuit is used to measure the small capacitance signals based on the differential sampling method. The performance and feasibility of the capacitance method are investigated and discussed. The capacitance signal is analyzed, which can reflect the voidage variation of two-phase flow. The gas slug velocity is determined through a cross-correlation technique using two identical capacitance sensors. The simulation and experimental results show that the presented capacitance measurement system is successful. Research work also verifies that the capacitance sensor is an effective method for the measurement of gas liquid two-phase flow parameters in micro-pipes.
机译:开发了一种电容测量系统,用于测量内径分别为3.96、2.65和1.56 mm的玻璃微管中的气液两相流。作为微管两相流系统中的典型流态,本研究选择了塞流。设计了一种电容传感器,并采用高分辨率,高速电容测量电路基于差分采样方法来测量小电容信号。研究并讨论了电容法的性能和可行性。分析了电容信号,可以反映两相流的空隙率变化。通过使用两个相同的电容传感器的互相关技术来确定气团速度。仿真和实验结果表明,所提出的电容测量系统是成功的。研究工作还证明,电容传感器是测量微管中气液两相流参数的有效方法。

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