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Experimental study on flow boiling heat transfer of multiport tubes with R245fa and R1234ze(E)

机译:R245fa和R1234ze的多口管流沸腾换热实验研究(E)

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The upward flow boiling experiments were carried out in a flat aluminum extruded multiport tube, which is composed of 7 parallel rectangular channels (1.1 mm × 2.1 mm) with hydraulic diameter of 1.4 mm. Two refrigerants, R245fa and R1234ze, the latter a recent environmentally safe refrigerant proposed as a potential replacement for R134a, were tested. A new hot water heating technique that accounts for either uniform or non-uniform local heat flux distribution along the channel was developed to obtain and reduce the data. Effects of heat flux, mass flux, vapor quality, and saturation temperature on flow boiling heat transfer in multiport tubes were considered. Finally, the experimental results were compared with some well-known correlations to evaluate the capabilities of existing prediction methods. The analysis shows that the three-zone model for slug flows works well for that subset of test results, utilizing the apparent surface roughness in place of the dryout thickness in the model, as has been previously done for silicon, stainless steel and copper microchannels with measured surface roughnesses.
机译:向上流动的沸腾实验在一个扁平的铝挤压多端口管中进行,该管由7个平行的矩形通道(1.1 mm×2.1 mm)组成,水力直径为1.4 mm。测试了两种制冷剂R245fa和R1234ze,后者是最近提出的对环境安全的制冷剂,可以替代R134a。为了获得和减少数据,开发了一种新的热水加热技术,该技术解决了沿通道的局部热通量分布均匀或不均匀的问题。考虑了热通量,质量通量,蒸气质量和饱和温度对多端口管中流沸腾传热的影响。最后,将实验结果与一些众所周知的相关性进行比较,以评估现有预测方法的能力。分析显示,对于模型结果,该三段塞流模型适用于测试结果子集,该模型利用表观表面粗糙度代替模型中的干透厚度,就像之前对硅,不锈钢和铜微通道所做的那样,测量的表面粗糙度。

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