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The influence of soil thermal properties on the operation performance on ground source heat pump system

机译:土壤热学性质对地源热泵系统运行性能的影响

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The in-site thermal response test (TRT) is commonly applied in engineering, but it treats the complex soil with groundwater as the homogeneous soil without groundwater. Although the short-term heat transfer of the two soils may be equivalent, its impact on the long-term performance of the ground source heat pump system (GSHPS) remains to be proved. In this paper, a three-dimensional numerical simulation platform was established. Based on the platform, the equivalence of the TRT and its impact on the long-term performance of the system were analyzed. The results showed that the short-term heat transfer between the actual and equivalent conditions is similar, but the long-term performance of the GSHPS differs greatly, better in the actual condition. The difference of the heat transfer of compact clay, lightweight sand and dry shale between the actual and equivalent conditions were 2.65%, 2.75% and 3.07%, respectively. Under the actual condition of dense clay, the average cooling coefficient of performance (COP) in the tenth year is 29.01% smaller than the equivalent condition, but the average heating COP was 12.38% higher. Compared with first year, the heating COP in the tenth year under actual condition decreased by 1.67%, but 8.70% under the equivalent condition. (C) 2019 Elsevier Ltd. All rights reserved.
机译:现场热响应测试(TRT)通常用于工程中,但它会将具有地下水的复杂土壤视为没有地下水的均匀土壤。尽管两种土壤的短期热传递可能是等效的,但其对地源热泵系统(GSHPS)长期性能的影响仍有待证明。本文建立了三维数值模拟平台。基于该平台,分析了TRT的等效性及其对系统长期性能的影响。结果表明,实际和等效条件之间的短期传热相似,但GSHPS的长期性能差异很大,在实际条件下更好。实际和等效条件下,致密粘土,轻质砂和干页岩的传热差分别为2.65%,2.75%和3.07%。在致密粘土的实际条件下,第十年的平均冷却性能系数(COP)比同等条件下小29.01%,但平均加热COP则高出12.38%。与第一年相比,第十年实际情况下的采暖COP下降了1.67%,但在同等条件下下降了8.70%。 (C)2019 Elsevier Ltd.保留所有权利。

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