首页> 外文期刊>Frontiers in Heat and Mass Transfer >HEAT TRANSFER CHARCACTERISTICS IN A COPPER MICRO-EVAPORATOR AND FLOW PATTERN-BASED PREDICTION METHOD FOR FLOW BOILING IN MICROCHANNELS
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HEAT TRANSFER CHARCACTERISTICS IN A COPPER MICRO-EVAPORATOR AND FLOW PATTERN-BASED PREDICTION METHOD FOR FLOW BOILING IN MICROCHANNELS

机译:铜微蒸发器中的传热特性及基于流型的微通道沸腾预测方法

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This article presents new experimental results for two-phase flow boiling of R-134a, R-1234ze(E) and R-245fa in a micro-evaporator. The test section was made of copper and composed of 52 microchannels 163μm wide and 1560μm high with the channels separated by 178μm wide fins. The channels were 13.2mm long. There were 35 local heaters and temperature measurements arranged in a 5×7 array as a pseudo-CPU. The total pressure drops of the test section were below 20kPa in all cases. The wall heat transfer coefficients were generally above 10’000W/m2K and a function of the heat flux, vapor quality and mass flux. A new flow pattern-based prediction method for flow boiling heat transfer coefficients in microchannels was developed based on the experimental results. The new prediction method also predicted published data for four other test sections accurately, capturing the trends versus vapor quality well.
机译:本文介绍了在微型蒸发器中R-134a,R-1234ze(E)和R-245fa两相流沸腾的新实验结果。测试部分由铜制成,由52个宽163μm,高1560μm的微通道组成,这些通道由178μm宽的散热片隔开。通道长13.2mm。作为伪CPU,以5×7的阵列排列了35个本地加热器和温度测量值。在所有情况下,测试部分的总压降均低于20kPa。壁的传热系数通常高于10'000W / m2K,并且是热通量,蒸汽质量和质量通量的函数。基于实验结果,提出了一种基于流型的微通道内沸腾传热系数预测方法。新的预测方法还可以准确地预测其他四个测试部分的已发布数据,从而很好地捕获了相对于蒸汽质量的趋势。

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