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Experimental Study on Flow Boiling Heat Transfer and Pressure Drop Characteristics of HFC134a in a Multi-Port Extruded Tube

机译:HFC134a在多口挤压管中的沸腾传热和压降特性的实验研究

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摘要

In the present study, the local heat transfer and pressure drop characteristics are investigated experimentally for the flow boiling of refrigerant HFC134a in a multi-port extruded tube of 1.06mm in hydraulic diameter. The test tube is 865mm in total length made of aluminum. The pressure drop is measured at an interval of 191 mm, and the local heat transfer coefficient is measured in every subsection of 75mm in effective heating length. Experimental ranges are as follows: the mass velocity of G=100 -700 kg/m{sup}2s, the inlet temperature of T{sub}(in)=5.9 - 11.4℃ and inlet pressure of about 0.5 MPa. The data of pressure drop are compared with a few previous correlations for small diameter tubes, and the correlations can predict the data relatively good agreement. The data of heat transfer coefficient is compared with the correlation of Yu et al. proposed for relatively large diameter tubes. It is found that there are some differences about two phase multiplier factor of convective heat transfer between the circular channel and rectangular channel. Therefore, the empirical correlation of multiplier factor of convective heat transfer term for rectangular channel is proposed.
机译:在本研究中,通过实验研究了制冷剂HFC134a在水力直径为1.06mm的多口挤压管中的沸腾现象。试管的总长度为865mm,由铝制成。每隔191毫米测量一次压降,并在有效加热长度的每一个75毫米分段中测量局部传热系数。实验范围如下:质量速度G = 100 -700 kg / m {sup} 2s,入口温度T {sub}(in)= 5.9-11.4℃,入口压力约0.5 MPa。将压力下降的数据与小直径管的先前相关性进行比较,这些相关性可以预测数据相对较好的一致性。将传热系数数据与Yu等人的相关性进行了比较。建议用于直径较大的管子。发现圆形通道与矩形通道之间的对流换热两相乘数因子存在差异。因此,提出了矩形通道对流换热项乘数因子的经验相关性。

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