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Integratable Capacitive Sensor for Identification of Microfluidic Two-Phase Flow Patterns in Lab-on-Chip Devices

机译:用于片上实验室设备中微流体两相流流型识别的可集成电容传感器

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摘要

This paper presents a feasible solution for a real-time sensing of microfluidic two-phase flow in lab-on-chip devices. A capacitive flow pattern sensor has been realized by employing an interdigital electrode configuration and a thin dielectric film. Three main flow patterns were observed in the microchannel, namely, droplet, short slug, and long slug flows. The output signal from the sensor was a real-time capacitance variation induced by the different flow patterns passing the sensing area. Experimental results give an indication of the flow patterns, due to the profile of capacitance variation. Furthermore, the identification of the flow patterns was achieved by autocorrelation of the capacitance variation and evaluation of a constant, specific for a given flow pattern in terms of linear velocity relation. This two-phase flow pattern sensor has potential to be used with other fluids, as long as they are immiscible and have very distinct dielectric properties. [2015-0249]
机译:本文提出了一种可行的解决方案,用于实时检测芯片实验室设备中的微流体两相流。通过采用叉指式电极配置和薄介电膜已经实现了电容式流动模式传感器。在微通道中观察到三种主要的流动模式,即液滴,短段塞和长段塞流。来自传感器的输出信号是由通过传感区域的不同流型引起的实时电容变化。由于电容变化的轮廓,实验结果表明了流动模式。此外,通过对电容变化进行自相关和对常数的评估来实现对流型的识别,该常数是特定于给定流型的线速度关系。该两相流模式传感器有可能与其他流体一起使用,只要它们是不混溶的并且具有非常不同的介电特性即可。 [2015-0249]

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