制冷技术
製冷技術
제랭기술
REFRIGERATION TECHNOLOGY
2012年
4期
23-25
,共3页
地源热泵%热响应测试%土壤热交换器
地源熱泵%熱響應測試%土壤熱交換器
지원열빙%열향응측시%토양열교환기
Ground source heat pump%Heat response test%Underground heat exchanger
土壤的平均导热系数与热阻是影响地下埋管换热器传热性能及地源热泵系统节能性与经济性的重要因素.利用线热源理论,通过地源热泵的工作试验过程,得到系统进出口水温等参数,并通过最小二乘法对所得数据进行拟合,得到地埋管换热器钻孔的导热系数及土壤热物性参数,测试结论对于指导土壤热交换器设计与施工具有一定的参考价值.
土壤的平均導熱繫數與熱阻是影響地下埋管換熱器傳熱性能及地源熱泵繫統節能性與經濟性的重要因素.利用線熱源理論,通過地源熱泵的工作試驗過程,得到繫統進齣口水溫等參數,併通過最小二乘法對所得數據進行擬閤,得到地埋管換熱器鑽孔的導熱繫數及土壤熱物性參數,測試結論對于指導土壤熱交換器設計與施工具有一定的參攷價值.
토양적평균도열계수여열조시영향지하매관환열기전열성능급지원열빙계통절능성여경제성적중요인소.이용선열원이론,통과지원열빙적공작시험과정,득도계통진출구수온등삼수,병통과최소이승법대소득수거진행의합,득도지매관환열기찬공적도열계수급토양열물성삼수,측시결론대우지도토양열교환기설계여시공구유일정적삼고개치.
The average thermal conductivity coefficient and thermal resisitence of soil are the key factors that affect the heat transfer performance of underground heat exchanger, the energy-saving and economical efficiency of the ground source heat pump. Based on the theory of line heat source, we get parameters including water temperature of inlet and outlet, through the experiment, and make function fitting with the data so as to work out the thermal conductivity coefficient and some other thermal parameters of soil, which can be consulted to design and apply underground heat exchanger.