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Dynamic thermal simulation of horizontal ground heat exchangers for renewable heating and ventilation of buildings

机译:用于建筑物可再生供暖和通风的水平地面热交换器的动态热模拟

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A ground heat exchanger is used to transfer thermal energy stored in soil in order to provide renewable heating, cooling and ventilation of a building. A computer program has been developed for simulation of the dynamic thermal performance of horizontally coupled earth-liquid heat exchanger for a ground source heat pump and earth-air heat exchanger for building ventilation. Neglecting the dynamic interactions between a heat exchanger and environments would significantly over predict its thermal performance and in terms of the amount of daily heat transfer the level of over-prediction could be as much as 463% for an earth-liquid heat exchanger and more than 100% for an earth-air heat exchanger. The daily heat transfer increases with soil moisture and for an earth-liquid heat exchanger the increase is between 3% and 35% with increase in moisture from 0.22 to 0.3 m(3)/m(3) depending on the magnitude of heat transfer. Heat transfer through a plastic earth-liquid heat exchanger can be increased by 10%-12% if its thermal properties are improved to the same as surrounding soil. The increase is smaller between 2% and 4% for an earth-air heat exchanger. In addition, an earth-liquid heat exchanger is more efficient than an earth-air heat exchanger. (C) 2016 Elsevier Ltd. All rights reserved.
机译:地面热交换器用于转移存储在土壤中的热能,以提供建筑物的可再生加热,冷却和通风。已经开发了计算机程序,用于模拟用于地源热泵的水平耦合土液热交换器和用于建筑物通风的地气热交换器的动态热性能。忽略换热器与环境之间的动态相互作用将大大过高地预测其热性能,就每日传热的量而言,对土液换热器的过度预测水平可能高达463%,而超过100%用于地面空气热交换器。每天的传热随着土壤水分的增加而增加,而对于土-液热交换器,随着热量从0.22增至0.3 m(3)/ m(3),水分的增加在3%至35%之间,具体取决于传热的幅度。如果将塑料土-液热交换器的热性能提高到与周围土壤相同的水平,则可以提高10%-12%。对于地面空气热交换器,增加幅度较小,介于2%和4%之间。另外,土-液热交换器比土-空气热交换器更有效。 (C)2016 Elsevier Ltd.保留所有权利。

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