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Thermal performance analysis of slinky-coil ground-air heat exchanger system with sand-bentonite as backfilling material

机译:膨润土为砂膨润土的硬线圈地面空气热交换器的热性能分析

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The ground-air heat exchanger (GAHE) is the promising passive technique for building heating/cooling, but due to its high installation cost (mainly pipe cost and excavation cost), it could not become popular. The required length of pipe can be reduced by using thermally enhanced backfilling material (BFM), while, the length of the trench can be reduced by using slinky-coil pipe layout. In the present study, an experimental laboratory setup of GAHE system has been developed with a slinky-coil pipe layout and sand-bentonite as BFM. For this, a flexible PVC pipe of 75 mm diameter and 30 m length, has been arranged in slinky-coil pattern and installed horizontally in a soil box of 10.2 m length. For the study, variation in soil temperature (23 degrees C-27 degrees C), inlet air temperature (38 degrees C-46 degrees C), air flow velocity (5 m/s-20 m/s) and soil conditions (dry and wet), have been considered. Study reveals that a drop-in air temperature as high as 18.7 degrees C at 30 m pipe length (trench length of 10.2 m) can be achieved with soil at a temperature of 27 degrees C and inlet air temperature of 46 degrees C. The study also revealed that the pipe length could be reduced by 20% with wet sand-bentonite as compared to dry sand-bentonite. (C) 2019 Elsevier B.V. All rights reserved.
机译:地面空气热交换器(GAHE)是用于建筑物采暖/制冷的有希望的被动技术,但是由于其高昂的安装成本(主要是管道成本和开挖成本),它无法普及。通过使用热增强的回填材料(BFM)可以减少所需的管道长度,同时可以通过使用弯曲线圈的管道布局来减少沟槽的长度。在本研究中,已经开发了一个实验性的GAHE系统实验室设置,该系统具有硬线圈管布局和膨润土为BFM的膨润土。为此,已将一根直径75毫米,长度为30 m的柔性PVC管布置成圆弧形,并水平安装在长度为10.2 m的土壤箱中。为了研究,土壤温度(23摄氏度至27摄氏度),进气温度(38摄氏度至46摄氏度),空气流速(5 m / s-20 m / s)和土壤条件(干燥)的变化和湿),已经考虑过。研究表明,土壤温度为27摄氏度,入口空气温度为46摄氏度时,在30 m的管道长度(沟槽长度为10.2 m)下,滴入空气的温度可高达18.7摄氏度。还表明,与干砂膨润土相比,湿砂膨润土可将管道长度减少20%。 (C)2019 Elsevier B.V.保留所有权利。

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