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Impacts of dynamic interactions on the predicted thermal performance of earth–air heat exchangers for preheating, cooling and ventilation of buildings

机译:动态相互作用对建筑物预热,制冷和通风的地热热交换器预测热性能的影响

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摘要

Earth–air tunnel ventilation is an energy efficient ventilation technique that makes use of relatively stable soil temperature in shallow ground for preheating and cooling of supply air to a building. During operation, an earth–air heat exchanger interacts with the soil and atmosphere and the performance varies with the soil and atmospheric conditions. A computer program has been developed for modelling of coupled heat and moisture transfer in soil and for simulation of the dynamic thermal performance of an earth–air heat exchanger for preheating and cooling of a building. The impacts of dynamic interactions between the heat exchanger, soil and atmosphere are illustrated from the comparison of the heat transfer rate, heat exchanger temperature and supply air temperature through the heat exchanger for both preheating and cooling. It is shown that neglecting the interactions between the heat exchanger, soil and supply air would over predict the thermal performance of an earth–air heat exchanger. Neglecting the interactions between the soil surface and atmosphere while assuming axi-symmetric distributions of heat and moisture transfer as well as soil properties around the heat exchanger is not only unrealistic but also would fail to produce reliable data for long-term operational performance of the earth–air heat exchanger installed in shallow ground. The performance of an earth–air tunnel ventilation system can be enhanced when operated for both winter preheating and summer cooling of a building.
机译:地空隧道通风是一种节能通风技术,它利用浅层地面中相对稳定的土壤温度对建筑物的送风进行预热和冷却。在运行过程中,地面空气热交换器与土壤和大气相互作用,并且性能随土壤和大气条件而变化。已经开发了一种计算机程序,用于对土壤中的热量和水分传递进行耦合建模,并模拟用于建筑物预热和冷却的地气热交换器的动态热性能。通过比较传热速率,热交换器温度和通过热交换器进行预热和冷却的送风温度,可以说明热交换器,土壤和大气之间动态相互作用的影响。结果表明,忽略换热器,土壤和送风之间的相互作用会过分预测地空换热器的热性能。忽略土壤表面与大气之间的相互作用,同时假设传热和水分传递的轴对称分布以及热交换器周围的土壤特性不仅是不切实际的,而且将无法为地球的长期运行性能提供可靠的数据–空气热交换器安装在浅层地面中。在建筑物的冬季预热和夏季冷却中运行时,可以提高地空隧道通风系统的性能。

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    Gan Guohui;

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  • 年度 2015
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