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Boiling nucleation and two-phase flow patterns in forced liquid flow in microchannels

机译:微通道内强迫液体中的沸腾成核和两相流型

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摘要

Using microfabrication techniques, a microscale platinum heater was fabricated on a Pyrex glass wafer and located in a shallow, but nearly trapezoidal microchannel with a hydraulic diameter of D_h = 56 microns fabricated on another glass wafer. Using a high-speed digital CCD video camera and microscope, the boiling nucleation temperature and two-phase flow patterns were observed and examined at different mass flow rates. The nucleation temperature was found to be reasonably close to the theoretical values as predicted by a 3D numerical heat transfer simulation with the measured bulk temperature of the microheater. The stability of the developed flow indicated three clearly distinguishable two-phase flow regimes: bubbly, wavy and annular. To avoid problems observed in the past, care was taken to ensure that the results were not influenced by the entrance and/or exit regions of the test section. The observed variations in the two-phase flow patterns were compared with the results of a model developed using a stability analysis of the liquid film.
机译:使用微细加工技术,在派热克斯玻璃晶片上制造了一个微型铂加热器,该铂加热器位于另一个玻璃晶片上,水深直径为D_h = 56微米的浅但近梯形的微通道中。使用高速数字CCD摄像机和显微镜,在不同的质量流量下观察并检查了沸腾成核温度和两相流型。发现成核温度相当接近理论值,如通过3D数值传热模拟对测得的微型加热器的体温进行预测。流动的稳定性表明三个明显可区分的两相流态:气泡状,波浪状和环形。为了避免过去观察到的问题,请注意确保结果不受测试部分的入口和/或出口区域的影响。将两相流型中观察到的变化与使用液膜稳定性分析建立的模型结果进行了比较。

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