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首页> 外文期刊>Sustainability >Analysis of Geo-Temperature Restoration Performance under Intermittent Operation of Borehole Heat Exchanger Fields
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Analysis of Geo-Temperature Restoration Performance under Intermittent Operation of Borehole Heat Exchanger Fields

机译:钻孔换热器场间歇运行下的地温恢复性能分析

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摘要

Intermittent operation can improve the coefficient of performance (COP) of a ground source heat pump (GSHP) system. In this paper, an analytical solution to analyze the geo-temperature restoration performance under intermittent operation of borehole heat exchanger (BHE) fields is established. For this purpose, the moving finite line source model is combined with the g-function and the superposition principle. The model takes into account the heat transfer along the borehole, thermal interference between BHEs, and the influence of groundwater flow. The accuracy of the model is validated through comparison with an experiment carried out under intermittent operation. The model makes it possible to analyze the geo-temperature restoration performance and its influencing factors, such as BHE spacing, heat flow rate, operation mode, and groundwater flow. The main conclusions of this work are as follows. The heat transfer along the borehole should be considered when analyzing the geo-temperature restoration performance. When the BHE spacing increases, the soil temperature change decreases and the heat recovery improves. Therefore, adequate borehole separation distance is essential in the case of a multiple BHE system with unbalanced load. The presence of groundwater flow is associated with interference between the BHEs, which should not be ignored. In the case of long-term operation, the groundwater flow is beneficial to the geo-temperature recovery process, even for downstream BHEs. Finally, a greater groundwater flux leads to a better geo-temperature recovery.
机译:间歇运行可以提高地源热泵(GSHP)系统的性能系数(COP)。本文建立了一个分析解决方案,用于分析井壁换热器(BHE)场间歇运行下的地温恢复性能。为此,将移动有限线源模型与g函数和叠加原理相结合。该模型考虑了沿井眼的传热,BHE之间的热干扰以及地下水流量的影响。通过与间歇操作下进行的实验进行比较,验证了模型的准确性。该模型可以分析地温恢复性能及其影响因素,例如BHE间距,热流量,运行模式和地下水流量。这项工作的主要结论如下。分析地温恢复性能时,应考虑沿井眼的热传递。当BHE间距增加时,土壤温度变化减小,热量回收率提高。因此,在多BHE系统负载不平衡的情况下,足够的井眼间距至关重要。地下水流的存在与BHE之间的干扰有关,这一点不容忽视。在长期运行的情况下,即使对于下游BHE,地下水流量也有利于地温恢复过程。最后,更大的地下水通量导致更好的地温恢复。

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