首页> 外文会议>4th International Conference on Nanochannels, Microchannels and Minichannels 2006(ICNMM2006) pt.B >TWO-PHASE PRESSURE DROP AND BOILING HEAT TRANSFER IN A SINGLE HORIZONTAL MICROCHANNEL
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TWO-PHASE PRESSURE DROP AND BOILING HEAT TRANSFER IN A SINGLE HORIZONTAL MICROCHANNEL

机译:单水平微通道中的两相压降和沸腾传热

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With a single microchannel and a series of microheaters made with MEMS technique, two-phase pressure drop and local flow boiling heat transfer were investigated using deionized water in a single horizontal rectangular microchannel. The test microchannel has a hydraulic diameter of 100 μm and length of 40 mm. A real time observation of the flow patterns with simultaneous measurement are made possible. Tests are performed for mass fluxes of 90, 169, and 267 kg/m~2s and heat fluxes of from 100 to 600 kW/m~2. The experimental local flow boiling heat transfer coefficients and two-phase frictional pressure gradient are evaluated and the effects of heat flux, mass flux, and vapor qualities on flow boiling are studied. Both the evaluated experimental data are compared with existing correlations. The experimental heat transfer coefficients are nearly independent on mass flux and the vapor quality. Most of all correlations do not provide reliable heat transfer coefficients predictions with vapor quality and prediction accuracy. As for two-phase pressure drop, the measured pressure drop increases with the mass flux and heat flux. Most of all existing correlations of two-phase frictional pressure gradient do not predict the experimental data except some limited conditions.
机译:通过单个微通道和一系列采用MEMS技术制造的微加热器,在单个水平矩形微通道中使用去离子水研究了两相压降和局部流动沸腾传热。测试微通道的水力直径为100μm,长度为40 mm。通过同时测量可以实时观察流型。测试的质量通量为90、169和267 kg / m〜2s,热通量为100至600 kW / m〜2。评价了实验性局部沸腾传热系数和两相摩擦压力梯度,并研究了热通量,质量通量和蒸气质量对沸腾的影响。将两个评估的实验数据与现有的相关性进行比较。实验传热系数几乎与质量通量和蒸汽质量无关。大多数相关都无法提供具有蒸气质量和预测精度的可靠的传热系数预测。对于两相压降,测得的压降随质量通量和热通量而增加。除了某些有限的条件外,现有的两相摩擦压力梯度的大多数相关性都无法预测实验数据。

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