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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Heat pipe structure on heat transfer and energy saving performance of the wall implanted with heat pipes during the heating season
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Heat pipe structure on heat transfer and energy saving performance of the wall implanted with heat pipes during the heating season

机译:采暖季节热管结构对壁面传热及节能性能的影响

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摘要

The heat transfer coefficient of the wall implanted with heat pipes (WIHP) is closely related to its energy saving potential. In thiS paper, the influence factors of heat pipe structure on heat transfer coefficient were analyzed to enhance the heat transfer performance of the WIHP, such as the working temperature, the ratio of the evaporating section length (RESL) and the diameter of the heat pipe. The results show that the average equivalent heat transfer coefficient (EHTC) of the WIHP reaches the maximum of 1.24 W/(m(2) degrees C) at a RESL of 75%, and the RESL should be optimized based on the working-hours-weighted mean temperature. There is an approximately linear relationship between the average EHTC and the diameter of heat pipe. The energy saving potential of a typical building with the WIHP in Tianjin, China was analyzed, which shows that the WIHP has a great energy saving potential during the heating season. (C) 2016 Elsevier Ltd. All rights reserved.
机译:植入热管的墙的传热系数(WIHP)与节能潜力密切相关。在本文中,分析了热管结构对传热系数的影响因素,以提高WIHP的传热性能,如工作温度,蒸发段长度比(RESL)和热管直径等。 。结果表明,在75%的RESL下,WIHP的平均等效传热系数(EHTC)达到最大值1.24 W /(m(2)摄氏度),并且RESL应该根据工作时间进行优化加权平均温度。平均EHTC与热管直径之间存在近似线性关系。分析了在中国天津使用WIHP的典型建筑的节能潜力,这表明WIHP在供暖季节具有很大的节能潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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