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TWO-PHASE FLOW OSCILLATIONS IN MICROCHANNEL CONVECTIVE BOILING

机译:微通道对流沸腾中的两相流量振荡

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A thermal microsystem with integrated heaters, pressure and temperature microsensors, has been fabricated to study local temperature and pressure fluctuations occurring in forced convective boiling in microchannels. The observed two-phase flows can be classified into two patterns: oscillating liquid/vapour interface and liquid burst flow; both leading to unsteady temperature and pressure fields. EFT power spectra of the measured signals are correlated with flow visualizations to analyse the two-phase flow modes. The dominant fluctuation frequency of each flow mode increases with input power; and, under similar conditions, the frequency of the periodically oscillating liquid/vapour interface is higher than the dominant frequency of the liquid bursts. Dimensional analysis is performed to derive empirical correlations for the dimensionless fluctuation frequency, Strouhal number, for both flow patterns.
机译:具有集成加热器,压力和温度微传感器的热微系统,已经制造了在微通道中的强迫对流沸腾中发生的局部温度和压力波动。观察到的两相流可以分为两种模式:振荡液/蒸气界面和液体爆发流动;两者都导致不稳定的温度和压力场。测量信号的EFT功率谱与流量可视化相关,以分析两相流模式。每个流模式的主导波动频率随输入功率而增加;并且,在类似的条件下,周期性振荡液/蒸气界面的频率高于液体突发的主要频率。执行尺寸分析,以导出对两个流动模式的无量纲波动频率,Strouhal数的经验相关性。

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