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Research on Heat Transfer Performance of Water Film for Outside the Tubes of the Microscale Evaporative Condenser

机译:微型蒸发冷凝器管外水膜的传热性能研究

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It is requested to develop a microscale and high performance heat exchanger for small size energy equipments. The heat transfer performance of the water film on the condensing coils of the microscale evaporative condenser was studied for a single-stage compressed refrigeration cycle system. Under various operation conditions, the effects of the spray density and the head-on air velocity on the heat transfer performance of the water film were investigated. The results show that the microscale heat transfer coefficient of the water film α_w increases with the increase of spray density and decreases with the increase of head-on air velocity. The results indicate that the key factor affecting the microscale heat transfer of the water film is the spray density.As the results, it is measured that the present device attained high heat transfer quantity despite the weight is light. In addition, via regression analysis of the experimental data, the correlation equation for calculating the microscale heat transfer coefficient of the water film was obtained, its regression correlation coefficient R is 0.98 and the standard deviation is 7.5%. Finally, the correlations from other works were compared. The results presented that the experimental correlation had better consistency with the correlations from other works. In general, the obtained experimental results of the water film heat transfer are helpful to the design and practical operation of the microscale evaporative condensers.
机译:要求开发一种用于小型能源设备的微型高性能热交换器。研究了单级压缩式制冷循环系统中水膜在微型蒸发冷凝器冷凝盘管上的传热性能。在各种操作条件下,研究了喷雾密​​度和迎面风速对水膜传热性能的影响。结果表明,水膜的微尺度传热系数α_w随着喷雾密度的增加而增加,而随着迎风速度的增加而减小。结果表明,影响水膜微尺度传热的关键因素是喷雾密度。 结果,测量出尽管重量轻,本装置仍获得了高的热传递量。另外,通过对实验数据进行回归分析,得到了计算水膜微尺度传热系数的相关方程,其回归相关系数R为0.98,标准偏差为7.5%。最后,比较了其他作品的相关性。结果表明,实验相关性与其他工作的相关性具有更好的一致性。通常,获得的水膜传热实验结果有助于微型蒸发冷凝器的设计和实际操作。

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