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首页> 外文期刊>Measurement Science & Technology >Investigation of water microchannel boiling flow regimes using electrical sensing elements along a single microchannel
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Investigation of water microchannel boiling flow regimes using electrical sensing elements along a single microchannel

机译:沿着单一微通道的电感元素对水微通道沸腾流动制度的研究

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In this work, we present a method that allows for the detection of the local flow regime in a metallic microchannel using on-channel electrical sensing elements. The development of the flow regime is analyzed along a straight channel (length: 63.5mm, width: 1.5mm, height: 0.5mm) using four transparent electrodes fabricated on a glass lid. A constant heat flux boundary condition at the channel walls is applied to deionized water flow. Measurements are validated by recorded videos at the same locations as the sensing elements. The topology of the probability densities of impedimetric measurements shows a clear connection with visually observed flow regimes, including bubbly, slug, wavy/chum and annular flow. The method and test facilities show promising potential for further investigations into how variable channel geometries and local process parameters influence microchannel boiling.
机译:在这项工作中,我们介绍了一种方法,其允许使用通道电感元件检测金属微通道中的局部流量。 使用在玻璃盖上制造的四个透明电极,通过直线通道(长度:63.5mm,宽度:1.5mm,高度:0.5mm)分析流动制度的发展。 沟道壁的恒定热通量边界条件施加到去离子水流。 通过与传感元件相同的位置的录制视频验证测量。 阻碍测量的概率密度的拓扑表明,与视觉观察到的流动制度的透明连接,包括起泡,裂缝,波浪/浊和环形流动。 该方法和测试设施显示了有希望进一步调查变量通道几何和局部过程参数如何影响微通道沸腾的潜力。

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