首页> 外文会议>4th international conference on microanoscale heat and mass transfer 2013 : Microanofluidics and Lab-on-a-chip ... >MICROCHANNEL CONDENSATION - COMPARISON OF ANNULAR LAMINAR FLOW THEORY WITH DETAILED MEASUREMENTS
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MICROCHANNEL CONDENSATION - COMPARISON OF ANNULAR LAMINAR FLOW THEORY WITH DETAILED MEASUREMENTS

机译:微通道冷凝-环形层流理论与详细测量的比较

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摘要

Detailed experimental investigations of condensation in microchannels where local heat flux and surface temperature were measured along the channel are compared with theoretical results for the special case of annular, laminar flow. The theoretical model includes surface tension driven transverse flow towards the corners of the channel as well as shear stress driven streamwise flow in an otherwise Nusselt treatment. The theory has no empirical input. When distributions along the channel of the local vapor and wall temperatures are given, local heat flux and heat-transfer coefficient, as well as local vapor quality, may be calculated. Such detailed experimental data have only recently become available. Strict implementation of the theory requires that the onset of condensation occurs within the channel, i.e. the vapor is saturated or superheated at the inlet. The comparisons show remarkably good agreement with the experimental data for two fluids and covering a wide range of experimental conditions.
机译:将微通道中冷凝的详细实验研究(沿通道测量局部热通量和表面温度)与环形层流特殊情况下的理论结果进行了比较。理论模型包括表面张力驱动的朝向通道角的横向流动,以及剪切应力驱动的在其他Nusselt处理中的水流。该理论没有经验输入。当给出沿局部蒸气和壁温度的通道的分布时,可以计算局部热通量和传热系数以及局部蒸气质量。这样的详细实验数据直到最近才可用。该理论的严格实施要求在通道内发生凝结的发生,即蒸汽在入口处饱和或过热。比较结果表明两种流体的实验数据非常吻合,并且涵盖了广泛的实验条件。

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