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Optimisation of a wall implanted with heat pipes and applicability analysis in areas without district heating

机译:植入热管的墙壁的优化和在没有区加热的区域的适用性分析

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摘要

The heat transfer performance of the heat pipe, which is the key component of a wall implanted with heat pipes (WIHP), has a great influence on the energy saving potential of WIHP. In this paper, the structure of heat pipes in WIHP is optimised and the equivalent heat transfer coefficient (EHTC) of Z-WIHP and H-WIHP is investigated experimentally in Tianjin. The working hours, heat transfer capacity and energy saving rate for H-WIHP are simulated numerically using meteorological data for typical cities in the hot summer and cold winter (HSCW) zone of China and in Western Europe. The results show that the average EHTC of H-WIHP is 1.12 W/(m(2).K), which is 7.7% higher than that of Z-WIHP. The energy saving rate for H-WIHP can reach about 12.7% in Tianjin, 15-25% in the HSCW zone and 15-35% in London, Paris, Lyon, Rome and Madrid. In summary, the H-WIHP has excellent prospects for future development due to large energy saving potential.
机译:热管的传热性能,是植入热管(WiHP)的壁的关键部件,对WIHP的节能电位产生了很大的影响。 本文在天津实验研究了WIHP中的热管结构,Z-WiHP和H-WiHP的等同传热系数(EHTC)。 H-WiHP的工作时间,传热能力和节能率在数值上使用炎热的夏季和寒冷冬季(HSCW)区和西欧的典型城市的气象数据模拟。 结果表明,H-WIHP的平均EHTC为1.12 W /(M(2).K),比Z-WIHP高7.7%。 H-WiHP的节能率在天津达到约12.7%,在HSCW区15-25%,伦敦,巴黎,里昂,罗马和马德里达到15-35%。 总之,由于巨大的节能潜力,H-WIHP具有优异的未来发展前景。

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