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Non-invasive measurement of void fraction and liquid temperature in microchannel flow boiling

机译:微通道流动沸腾中空隙率和液体温度的无创测量

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摘要

Past thermometry research for two-phase microfluidic systems made much progress regarding wall temperature distributions, yet the direct measurement of fluid temperature has received little attention. This paper uses a non-invasive two-dye/two-color fluorescent technique to capture fluid temperature along with local liquid fraction in a two-phase microflow generated by injecting air into a heated microchannel. The fluorescent emission of Rhodamine 110 and Rhodamine B, measured with photodiodes, is used to obtain local liquid temperature (±3°C) and void fraction (±2% full-scale) over a temperature range from 45 to 100°C. Arrays of these sensors can significantly expand the set of measurable flow parameters to include bubble/slug frequency, size, velocity, and growth rates in addition to mapping the local liquid temperature and void fraction.
机译:过去关于两相微流体系统的测温研究在壁温分布方面取得了很大进展,但是对流体温度的直接测量却很少受到关注。本文采用非侵入性的双染料/双色荧光技术,通过将空气注入加热的微通道产生的两相微流中,捕获流体温度以及局部液体分数。用光电二极管测量的若丹明110和若丹明B的荧光发射用于在45至100°C的温度范围内获得局部液体温度(±3°C)和空隙率(±2%满量程)。这些传感器的阵列除了可以绘制局部液体温度和空隙率以外,还可以显着扩展可测量流量参数集,以包括气泡/团块频率,大小,速度和增长率。

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