首页> 外文会议>ASME international conference on nanochannels, microchannels and minichannels >FLOW REGIME DETECTION OF BOILING FLOW IN MICROCHANNELS USING ELECTRICAL SENSING ELEMENTS VALIDATED BY VIDEOGRAPHY
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FLOW REGIME DETECTION OF BOILING FLOW IN MICROCHANNELS USING ELECTRICAL SENSING ELEMENTS VALIDATED BY VIDEOGRAPHY

机译:利用视像学验证的电子传感元件检测微通道中的沸腾流动

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In this work we present a method that provides the possibility to analyze directly the electrical properties of two-phase flow in microchannel boiling systems. It is shown that the use of impedimetric sensing techniques can be used to track two-phase boiling flow. In order to perform such measurements, the electrical impedance of the composite medium in the channel is measured using planar capacitive elements that are implemented over the channel on a glass lid. Working electrodes are fabricated using indium tin oxide on glass and are compressed against a precision machined metal microchannel. Therefore, it is possible to visually analyze two-phase flow inside the microchannel while simultaneously performing electrical impedance measurements. In order to prevent electrochemical reactions between the fluid inside the microchannel and electrodes on the glass lid, a thin layer of SU8 photoresist was deposited as a protective layer. The electrical impedance measurements were characterized over two-phase flow regimes including bubbly flow, slug flow and annular flow via comparison with simultaneous video recordings.
机译:在这项工作中,我们提出了一种方法,该方法提供了直接分析微通道沸腾系统中两相流电学特性的可能性。结果表明,使用阻抗感测技术可以跟踪两相沸腾流量。为了执行这样的测量,使用在玻璃盖上的通道上方实现的平面电容元件来测量通道中复合介质的电阻抗。工作电极是用氧化铟锡在玻璃上制成的,并紧靠精密加工的金属微通道进行压缩。因此,可以在视觉上分析微通道内部的两相流,同时执行电阻抗测量。为了防止微通道内部的流体与玻璃盖上的电极之间发生电化学反应,沉积了一层SU8光致抗蚀剂薄层作为保护层。通过与同时进行的视频记录进行比较,在包括气泡流,团状流和环形流的两相流状态下对电阻抗测量进行了表征。

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