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Miniature conductivity wire-mesh sensor for gas-liquid two-phase flow measurement

机译:用于气液两相流量测量的微型电导率丝网传感器

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A miniature conductivity wire-mesh sensor for gas-liquid two-phase flow measurement in small channels is presented. The sensor design is similar to the conventional wire-mesh sensor for larger flow cross sections with wire electrodes stretched across the flow channel in two adjacent planes and with perpendicular wire orientation between planes. Conductivity measurement is performed by special electronics which consecutively applies bipolar voltage pulse excitation to the sender wires and measures electrical current flow in the wire crossings at the receiver wires. The new design is based on printed circuit board technology. A prototypical sensor made of 2 × 16 stainless steel wires each of 50 μm diameter was manufactured and applied to two-phase flow measurement inside the mixing chamber of an effervescent atomizer. Accuracy of the sensor was studied for static liquid distributions using microphotography and for dynamic two-phase flow by comparison of wire-mesh sensor data with radial gas fraction profiles obtained from X-ray microtomography measurements.
机译:提出了一种用于小通道气液两相流量测量的微型电导率丝网传感器。该传感器的设计类似于常规的金属丝网传感器,用于较大的流动横截面,其中金属丝电极在两个相邻平面中延伸穿过整个流动通道,并且在两个平面之间具有垂直的金属丝方向。电导率测量由特殊的电子设备执行,该电子设备连续将双极电压脉冲激励施加到发送器导线上,并测量接收器导线上导线交叉处的电流。新设计基于印刷电路板技术。制造了由2根直径为50μm的2×16不锈钢线制成的原型传感器,并将其应用于泡腾雾化器混合室内的两相流量测量。通过比较丝网传感器数据与从X射线显微断层照相术测量获得的径向气体分数曲线,研究了使用显微照相术对静态液体分布和动态两相流传感器的精度。

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