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Size and shape effects on two-phase flow patterns in microchannel forced convection boiling

机译:尺寸和形状对微通道强制对流沸腾中两相流型的影响

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An integrated microchannel heat sink consisting of shallow, nearly rectangular microchannels has been fabricated using standard micromachining techniques to highlight the effects of the micrometer sized channel shape on the evolving flow patterns and, consequently, on the thermal performance of the microsystem. An integrated heater serves as a local heat source, while an array of micro thermistors is used for temperature distribution measurements. The working fluid, DI water, is pressurized through the microchannels for forced convection heat transfer studies. Boiling curves for different flow rates have been recorded and analyzed based on the visualized flow patterns. Local nucleation, including bubble formation and bubble dynamics, is documented and found to be negligible. Although detected, in contrast with triangular microchannels, annular flow is observed to be unstable. Instead, the dominant flow pattern is an unsteady transition region connecting an upstream vapor zone to a downstream liquid zone with an average location depending on the input power. A physical mechanism based on the force balance across the vapor-liquid interface, and the development of a restoring force, is proposed to explain the flow visualization results. [References: 10]
机译:已经使用标准的微加工技术制造了由浅的,接近矩形的微通道组成的集成微通道散热器,以突出显示微米尺寸的通道形状对不断演变的流型以及因此对微系统的热性能的影响。集成加热器用作局部热源,而微型热敏电阻阵列用于温度分布测量。通过微通道对去离子水进行加压,以进行强制对流换热研究。已根据可视化流型记录并分析了不同流速的沸腾曲线。有记录的局部成核,包括气泡形成和气泡动力学,可以忽略不计。尽管被检测到,但是与三角形微通道相反,观察到环形流动是不稳定的。取而代之的是,主要的流动模式是一个不稳定的过渡区域,该过渡区域将上游蒸汽区域连接到下游液体区域,其平均位置取决于输入功率。提出了一种基于跨气液界面力平衡和恢复力发展的物理机制来解释流动可视化结果。 [参考:10]

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