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首页> 外文期刊>International Journal of Heat and Mass Transfer >Flow boiling in horizontal annuli outside horizontal smooth, herringbone and three-dimensional enhanced tubes
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Flow boiling in horizontal annuli outside horizontal smooth, herringbone and three-dimensional enhanced tubes

机译:在水平光滑,人字形和三维增强管外部的水平环空中沸腾的流体

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摘要

Heat transfer and pressure drop measurements of R410A saturated flow boiling in horizontal annuli were performed at a saturation temperature of 6 degrees C over the mass flux range of 8-107 kg/(m(2) s). The inner tubes with the same inside diameter of 12.70 mm contain a smooth tube, a herringbone micro-fin tube and a 1EHT tube (a dimpled tube enhanced by petal-shaped background patterns). In this study, the test section is a typical double-tube type heat exchanger and the emphasis is focused on the effects of mass flux, vapor quality, annular width and surface structures on the annulus-side heat transfer. Wilson plot method was adopted to ensure the correction factor of water-side coefficient of lEHT tube. For flow boiling tests in annuli with an annular gap of 6.35 mm, both the evaporating coefficient and pressure drop increase as the mass velocity increases. Better thermal performance was seen at a outlet vapor quality of 0.6. In this case, the heat transfer rate ratio of enhanced annulus to smooth annulus is 1.7-2.5 for the herringbone micro-fin tube and 1.4-1.7 for the 1EHT tube, respectively. When the annular spacing decreases, heat transfer deterioration will worsen accompanied with a sudden drop in boiling heat transfer coefficient. Besides, a comparison of flow boiling characteristics of annulus-side and tube-side heat transfer was made. The annulus-side heat transfer coefficient is much larger than that of tube side case. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在质量通量范围8-107 kg /(m(2)s)内,在6摄氏度的饱和温度下,在水平环形空间中沸腾的R410A饱和流的传热和压降测量。内径相同的内管为12.70 mm,内管包括一个光滑管,一个人字形微翅片管和一个1EHT管(通过花瓣形背景图案增强的带凹痕的管)。在这项研究中,测试部分是典型的双管式热交换器,重点是质量通量,蒸汽质量,环形宽度和表面结构对环面侧传热的影响。采用威尔逊图法确定lEHT管水侧系数的修正系数。对于环形间隙为6.35 mm的环形空间中的沸腾测试,随着质量速度的增加,蒸发系数和压降均会增加。在出口蒸气质量为0.6时,热性能更好。在这种情况下,人字形微翅片管的增强环与光滑环的传热速率比分别为1.7-2.5和1EHT管为1.4-1.7。当环形间隔减小时,传热恶化将恶化,同时沸腾传热系数突然下降。此外,比较了环侧和管侧传热的沸腾特性。环面侧的传热系数比管侧情况大得多。 (C)2019 Elsevier Ltd.保留所有权利。

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