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A novel tree-shaped ground heat exchanger for GSHPs in severely cold regions

机译:一种新型树形地面热交换器,用于严重寒冷地区的GSHPS

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摘要

In severely cold regions, thermal load imbalance and fluctuation of soil temperature always occur in the application of ground source heat pump system (GSHPs), resulting in the degradation of thermal efficiency and even the collapse of the overall GSHPs. In this study, a novel tree-shaped ground heat exchanger (GHE) is suggested for GSHPs in severely cold regions instead of common type: serpentine-tube type to mitigate soil temperature fluctuation and obtain a better comprehensive performance. In the analysis, to investigate the potential of tree-shaped GHE, a comparison study between tree-shaped and serpentine-shaped GHE is carried out. Furthermore, the optimizations of different structure parameters for tree-shaped GHE are studied. The results indicate that the tree-shaped GHE is propitious to weaken soil temperature fluctuation. Meanwhile, the tree-shaped GHE shows a 33.4-38.3% higher comprehensive performance and yields a 51.2-56% lower pressure drop than serpentine-tube type at the inlet-velocity of 0.4-1.2 m/s. Taking integrative performance of GHE into account, the optimal bifurcation angle is 120 degrees.
机译:在严重的寒冷地区,在地源热泵系统(GSHPS)的应用中,土壤温度的热负荷不平衡和波动始终发生,导致热效率的降低甚至整体GSHP的崩溃。在这项研究中,在严重的冷地区代替普通型冷区内的GSHPS而不是普通型树管式,以减轻土壤温度波动并获得更好的综合性能。在分析中,为了研究树形GHE的潜力,进行树形和蛇形GHE之间的比较研究。此外,研究了树形GHE的不同结构参数的优化。结果表明,树形GHE有利于削弱土壤温度波动。同时,树形GHE显示出综合性能较高33.4-38.3%,并在0.4-1.2米/秒的入口速度下产生比蛇管型降低51.2-56%。考虑到GHE的综合性能,最佳分叉角度为120度。

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