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Research of Aquifer Thermal Energy Storage System Integrated Underground Water Heat Pump

机译:含水层热能储存系统集成地下水热泵研究

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Effect of aquifer thermal energy storage (ATES) of underground water heat pump system was researched. In winter, the heat pump extracted heat from underground water for space heating, at the same time, cold water was re-injected to underground and stored up around in-rejecting well, which would be used as the cool source of heat pump in summer. Similarly, in summer, underground water absorbed discharged heat of heat pump, and then temperature was raised and was re-injected to underground, which was stored up around the other in-rejecting well and would be supplied higher temperature water for the heat pump in winter. In this paper, the temperature and flux of production and re-injection wells had been tested in one year. Based on this datum, the ration of heat and cool energy storage was calculated; it indicated that the thermal and cool energy storage efficacy of the ATES system was 10.97percent and 7.98percent respectively.
机译:研究了地下水热泵系统的含水层热能储存(ATES)的影响。在冬季,热泵从地下水中提取了空间加热的热量,同时,冷水重新注射到地下并储存在储存的井周围,这将被用作夏季热泵的凉爽源。同样地,在夏季,地下水吸收的热泵的排出热量,然后升温并重新注入地下,该地下被储存在另一个内部储存井周围,并将为热泵提供更高的温度水冬天。在本文中,在一年内测试了生产和再注入孔的温度和助熔剂。基于该基准,计算了热量和凉爽储能的配给;它表明,ATES系统的热和冷却能量储存功效分别为10.97分,分别为7.98%。

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