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TWO-PHASE BOILING FLOW IN MICROCHANNELS - INSTABILITIES ISSUES AND FLOW REGIME MAPPING

机译:微通道中的两相沸腾流动 - 不稳定性问题和流动制度映射

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The design, fabrication, and evaluation of forced convection boiling two-phase flow, micro scale heat exchanger are described. The micro heat exchanger consist of a heater, and 16 mm long multiple parallel triangular micro channels, with hydraulic diameter ranging from 50 μm to 200 μm. The system allowed simultaneously visualizing the flow regime, to measure the resistor temperature distribution, the pressure drop, and input power levels. Experiments were conducted using water with mass flow rate of 1-10 g/min and heat fluxes ranging from 10-60 W/cm~2 in order to better understand the flow mechanism associated with micro scale forced convection boiling two-phase flow. The pressure drop, temperature, fluctuation and flow regimes map were obtained. The results are consistent with newly reported studies and show that flow fluctuation at that scale is exaggerated with respect to conventional size channels. A unique flow regime was observed and was named "rapid bubble growth".
机译:描述了强制对流沸腾两相流,微刻度热交换器的设计,制造和评估。微热交换器由加热器和16mm长的多个平行三角形微通道组成,液压直径为50μm至200μm。系统允许同时可视化流量,以测量电阻器温度分布,压降和输入功率水平。使用含有1-10g / min的质量流速的水进行实验,并从10-60w / cm〜2的热通量进行,以便更好地理解与微尺寸强制对流沸腾两相流相关的流动机制。获得压降,温度,波动和流动制度图。结果与新报告的研究一致,并表明该规模的流动波动被夸大了传统尺寸通道。观察到一个独特的流动制度,并被命名为“快速泡沫增长”。

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