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Experimental study to investigate the effect of water impregnation on thermal performance of earth air tunnel heat exchanger for summer cooling in hot and arid climate

机译:研究水浸对炎热干旱气候下夏季降温的空气隧道换热器热性能影响的实验研究

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An EATHE system performs well for short periods but its thermal performance gets deteriorated during long continuous operation due to sub-soil thermal saturation in the vicinity of buried pipe. Effect of soil thermal saturation can be reduced to some extent in longer EATHE pipe but it is uneconomical. In the present study sub-soil moisture content is increased to enhance soil thermal properties and its effect on EATHE thermal performance and pipe length requirement for certain temperature drop has been investigated experimentally for summer cooling in hot and arid climate. In the study, two identical experimental set-ups have been developed at Ajmer city (India). A water impregnation system has been introduced to maintain different soil moisture contents in the close proximity of EATHE pipe. Knee point is obtained at a length of 29 m, 28 m, 27 m and 26 m from pipe inlet section with 5%, 10%, 15% and 20% moisture in sub-soil respectively, as compared to 41 m length in dry soil, after 10 h of continuous operation. The average heat transfer rate and COP increased by 24.1% and 24.0% respectively for 20% moisture content at 30 m EATHE pipe length as compared to dry system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:EATHE系统在短期内表现良好,但由于埋管附近的地下土壤热饱和,因此长时间连续运行后其热性能会下降。在更长的EATHE管中,可以一定程度地降低土壤热饱和的影响,但这是不经济的。在本研究中,增加了地下土壤的水分含量,以增强土壤的热性能,并针对炎热和干旱气候下的夏季降温实验研究了其对EATHE热性能和一定长度的管长要求的影响。在这项研究中,在印度阿杰梅尔市开发了两个相同的实验装置。已经引入了水浸渍系统,以在EATHE管的附近保持不同的土壤水分含量。距管道入口段29 m,28 m,27 m和26 m处的拐点处的含水量分别为5%,10%,15%和20%,而干燥时为41 m连续运行10小时后的土壤。与干式系统相比,在30 m EATHE管长处,水分含量为20%时,平均传热率和COP分别增加24.1%和24.0%。 (C)2017 Elsevier Ltd.保留所有权利。

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