Experimental Study on Convective Heat Transfer and Pressure Drop Characteristics of an Alternating Cross-Section Flattened Tube with Different Twist Angle

Kunlakarn Warnropru, Jatuporn Kaew-On, Nares Chimres
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Abstract

In this research, the heat transfer coefficient (HTC) and pressure drop of alternating cross-section flattened (ACF) tubes were investigated experimentally and compared with the same parameters of a circular tube. Three different ACF tubes were fabricated from circular copper tubing with an internal diameter of 4.5 mm, a thickness of 1 mm, and a length of 400 mm. The twist angles were 30, 45, and 90°. The experimental ranges covered a mass flux of 729–1,434 kg/m2s and a heat flux of 12–30 kW/m2. The results showed that the HTC and pressure drop increased with mass flux. The HTC decreased with increments of heat flux, but the pressure drop did not change. The HTC and pressure drop of the ACF tubes were higher than those of the circular tube. The ACF tube with 90° twist angles produced the highest HTC, and the thermal performance of that tube was about 27% better than the thermal performance of the circular tube.
不同扭角交变截面扁平管对流换热及压降特性实验研究
本文对变截面扁平管的传热系数和压降进行了实验研究,并与相同参数的圆管进行了比较。三种不同的ACF管由圆形铜管制成,内径为4.5 mm,厚度为1mm,长度为400mm。扭转角度分别为30°、45°和90°。实验范围为质量通量729 - 1434 kg/m2,热流通量12-30 kW/m2。结果表明,随着质量通量的增加,HTC和压降逐渐增大。热流密度随热流密度的增加而减小,但压降不变。ACF管的HTC和压降均高于圆管。扭转角为90°的ACF管产生的HTC最高,其热性能比圆管的热性能好27%左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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