地埋管地源热泵系统长期运行对换热区域地温场影响分析
Influence of long-term operation of ground source heat pump on geothermal field in heat transfer area
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摘要: 为了研究夏热冬冷地区地埋管地源热泵系统长期运行对换热区域地温场的影响,以南昌市某建筑地埋管地源热泵工程为例,对该示范工程4年间换热区域内外地温场变化特征和冷热堆积进行分析. 该工程设置了7个温度监测孔,分别在地埋管孔群中央以及周边由近及远不同距离对该系统运行4年间地埋管换热区域地温场进行了全面的监测. 分析结果表明:本地源热泵工程持续运行4年间,地埋管换热区域内外地温均随热泵运行呈现周期性变化;地温在垂向上随深度增加而增大,变化幅度逐渐减小;径向上,地埋管换热区周围地温波动随着远离地埋管呈现逐渐减小的趋势;该地源热泵系统持续运行4年中,地埋管孔群换热的热影响半径在3~6 m之间;系统持续运行4年后,孔群边界平均地温仅升高0.13℃,热堆积现象不明显. 该分析结果可为地埋管换热孔场地设计提供依据.Abstract: To study the influence of long-term operation of ground source heat pump (GSHP) on geothermal field in heat transfer area of hot-summer and cold-winter regions, taking a GSHP project in Nanchang City as an example, this paper analyzes the variation characteristics of geothermal field and heat-cold accumulation inside and outside the heat transfer area of the demonstration project over four years of operation. The project arranges seven temperature monitoring holes in the center and surrounding areas of the GSHP group for comprehensive monitoring of geothermal field changes in heat transfer area during the four-year operation. The analysis results show that the geothermal temperature inside and outside the heat transfer area changes periodically with the four-year operation of GSHP; The geothermal temperature increases with increasing depth vertically, and the variation range decreases gradually; Radially, geothermal temperature variations around the heat transfer area gradually decreases with increasing distance from hole group; The thermal influence radius of the hole group is 3-6 m during the four-year operation; The average temperature at the hole group boundary increases merely by 0.13℃, indicating insignificant heat accumulation after the four-year operation. These findings provide references for the site design of GSHP heat transfer holes.