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Experimental investigation on the performance of earth-air pipe heat exchanger for different soil compaction levels

机译:不同土壤压实水平的土气管热交换器性能的实验研究

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In this paper, a new design of atmospheric air passive cooling system which consists of an earth-air pipe heat exchanger is proposed. The objective of this system is to cool the warm ambient air for thermal applications in hot arid areas. A 1.5 m long copper pipe with 1.5 cm inner diameter was buried under the soil contained in a galvanized steel drum. The blower and air heater were used at pipe inlet to induce warm air inside the pipe which gets cooled in earth-air pipe heat exchanger. The experiments were performed under the controlled conditions of operating parameters such as induced air temperature, flow rate and soil bulk temperature. The performance of considered heat exchanger was studied for three different soil compaction levels with distinct values of relative density, void ratio and porosity. The results showed that induced air temperature was dropped in the range between 8 and 24 degrees C across the earth-air pipe heat exchanger and the system effectiveness varied between 0.3 and 0.7 depending on the operating conditions and soil compaction. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种由地球空气管热交换器组成的大气空气被动冷却系统的新设计。该系统的目的是冷却热处理区域的热应用温暖的环境空气。 1.5米长的铜管,内径为1.5厘米,埋在镀锌钢桶中的土壤下。在管道入口处使用鼓风机和空气加热器,以诱导管道内的暖空气,该暖空气在地球 - 空气管道热交换器中冷却。实验是在经运行参数的受控条件下进行的,例如诱导的空气温度,流速和土壤体积温度。研究了考虑的热交换器的性能对于三种不同的土壤压实水平,具有不同的相对密度,空隙率和孔隙度的不同。结果表明,在接地空气管道热交换器上,诱导的空气温度在8至24摄氏度之间的范围内,并且根据操作条件和土壤压实,系统有效性在0.3和0.7之间变化。 (c)2017 Elsevier Ltd.保留所有权利。

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