首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >A Dual Conductance Sensor for Simultaneous Measurement of Void Fraction and Structure Velocity of Downward Two-Phase Flow in a Slightly Inclined Pipe
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A Dual Conductance Sensor for Simultaneous Measurement of Void Fraction and Structure Velocity of Downward Two-Phase Flow in a Slightly Inclined Pipe

机译:双电导率传感器用于同时测量微倾斜管道中的向下两相流动的空隙率和结构速度

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摘要

In this study, a new and improved electrical conductance sensor is proposed for application not only to a horizontal pipe, but also an inclined one. The conductance sensor was designed to have a dual layer, each consisting of a three-electrode set to obtain two instantaneous conductance signals in turns, so that the area-averaged void fraction and structure velocity could be measured simultaneously. The optimum configuration of the electrodes was determined through numerical analysis, and the calibration curves for stratified and annular flow were obtained through a series of static experiments. The fabricated conductance sensor was applied to a 45 mm inner diameter U-shaped downward inclined pipe with an inclination angle of 3° under adiabatic air-water flow conditions. In the tests, the superficial velocities ranged from 0.1 to 3.0 m/s for water and from 0.1 to 18 m/s for air. The obtained mean void fraction and the structure velocity from the conductance sensor were validated against the measurement by the wire-mesh sensor and the cross-correlation technique for the visualized images, respectively. The results of the flow regime classification and the corresponding time series of the void fraction at a variety of flow velocities were also discussed.
机译:在这项研究中,提出了一种新的和改进的电导率传感器,不仅适用于水平管,而且还适用于倾斜管。电导率传感器被设计为具有双层结构,每层由一个三电极组成,可依次获得两个瞬时电导率信号,因此可以同时测量平均面积的空隙率和结构速度。通过数值分析确定电极的最佳配置,并通过一系列静态实验获得分层和环形流动的校准曲线。将制成的电导率传感器在绝热的空气-水流动条件下,以3°的倾斜角应用于内径为45 mm的U形向下倾斜的管子上。在测试中,水的表面速度范围从0.1到3.0 m / s,空气的表面速度从0.1到18 m / s。分别通过丝网传感器和互相关技术对可视化图像的测量结果进行了验证,从电导率传感器获得的平均空隙率和结构速度进行了验证。还讨论了在各种流速下的流态分类结果和相应的空隙率时间序列。

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