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首页> 外文期刊>International Journal of Refrigeration >Flow boiling heat transfer of carbon dioxide Inside a small-sized microfin tube
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Flow boiling heat transfer of carbon dioxide Inside a small-sized microfin tube

机译:二氧化碳在微细管内的沸腾传热

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摘要

This study investigated the flow boiling heat transfer of carbon dioxide inside a small-sized microfin tube (mean inner diameter: 2.0 mm; helix angle: 6.3°) at a saturation temperature of 15℃, and heat and mass flux ranges of 4.5-18 kW m~(-2) and 360-720 kg m~(-2) s~(-1), respectively. Although, experimental results indicated that heat flux has a significant effect on the heat transfer coefficient, the coefficient does not always increase with mass flux, as in the case of conventional refrigerants such as HFCs or HCFCs. Under certain conditions, the heat transfer coefficient at a high mass flux was lower than that at a lower mass flux, indicating that convective heat transfer had a suppression effect on nucleate boiling. The heat transfer coefficients in the microfin tubes were 1.9 ~ 2.3 times the values in smooth tubes of the same diameter under the same experimental conditions, and the dryout quality was much higher, ranging from 0.9 to 0.95. The experimental results indicated that using microfin tubes may considerably increase the overall heat transfer performance.
机译:本研究研究了在温度为15℃的小型微翅片管(平均内径:2.0 mm;螺旋角:6.3°)中二氧化碳的沸腾传热,热量和质量通量范围为4.5-18 kW m〜(-2)和360-720 kg m〜(-2)s〜(-1)。尽管实验结果表明,热通量对传热系数有显着影响,但与传统制冷剂(如HFCs或HCFCs)一样,该系数并不总是随质量通量而增加。在某些条件下,高通量的传热系数低于低通量的传热系数,表明对流传热对核沸腾有抑制作用。在相同的实验条件下,相同直径的微管中的传热系数是其直径的1.9〜2.3倍,其干透质量要高得多,在0.9到0.95之间。实验结果表明,使用微翅片管可以显着提高整体传热性能。

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