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The influence of surface structure and thermal conductivity of the tube on the condensation heat transfer of R134a and R404A over single horizontal enhanced tubes

机译:管对单卧式增强管R134a和R404a凝结热传递的影响和热导率的影响

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摘要

The influences of tube's surface structure and thermal conductivity on the filmwise condensation of R134a and R404A are investigated on four single horizontal enhanced tubes with 2D and 3D finned structures. The test tubes are made of iron cupronickel and aluminum brass. The results indicate that the condensation heat transfer of R404A is more sensitive to surface structure and thermal conductivity than R134a; the 3D finned surface is more suitable than the 2D finned one to enhance the condensation heat transfer for the tubes with low thermal conductivity; the different material thermal conductivities produce different subcooling temperature distributions of the fins, and therefore provide different condensation heat transfer performances. Besides, the influencing mechanisms of the tube's thermal conductivity on condensation heat transfer are elucidated. (C) 2017 Published by Elsevier Ltd.
机译:在具有2D和3D翅片结构的四个单个水平增强管上研究了管表面结构和导热性对R134A和R404A的胶片缩合的影响。 试管由铁Cupronickel和铝黄铜制成。 结果表明,R404a的冷凝传热对表面结构和导热率比R134a更敏感; 3D翅片表面比2D翅片的表面更合适,以增强具有低导热率的管的冷凝传热; 不同的材料热导率产生翅片的不同过冷温度分布,因此提供不同的冷凝传热性能。 此外,阐明了管对冷凝热传递对冷凝热传递的热导率的影响机制。 (c)2017年由elestvier有限公司出版

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