CFD numerical simulation of a U-tube ground heat exchanger used in ground source heat pumps
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摘要: 為了給地源熱泵U型管地下換熱器的優化設計提供理論依據,通過CFD數值軟件對地源熱泵U型管地下換熱器系統中的流動和傳熱過程進行數值模擬.結果表明,地源熱泵U型管地下換熱器的換熱效率隨支管間距的增大而增加,隨回填土材料熱導率的增加而增大,而且支管間距和回填土材料熱導率對換熱器效率的影響是很復雜的非線性關系.當鉆孔深度超過80m時,兩支管的溫升比急劇增加,支管間的熱損失加劇,建議在實際操作中鉆孔深度不要太深.Abstract: To provide a theory for the optimized design of a U-tube ground heat exchanger used in ground source heat pumps, CFD software was used to simulate the processes of flow and heat transfer in the U-tube ground heat exchanger. The results show that the heat transfer efficiency of the U-tube ground heat exchanger increases with the increasing distance between two tubes and with the increasing heat conductivity of backfilling soil. The effect of the distance between two tubes and the heat conductivity of backfilling soil on the U-tube ground heat exchanger's efficiency are a very complex nonlinear relation. When the hole-depth is deeper than 80 m, the temperature rise ratio of two tubes increases rapidly and the heat losing between two tubes increases. In practical operation, the hole-depth is better not to be too deep.
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