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作 者:Xuejuan Li Yunfeng Wang Ming Li Mengxiao Hang Wenkui Zhao Decheng Kong Gaofei Yin
机构地区:[1]Solar Energy Research Institute,Yunnan Normal University,Kunming 650500,China [2]Key Laboratory of Solar Heating and Cooling Technology of Yunnan Provincial Universities,Kunming 650500,China
出 处:《Energy and Built Environment》2022年第3期316-326,共11页能源与人工环境(英文)
基 金:This study was supported by the National Natural Science Founda-tion of China(Grant no.51966019);the Key Programme of Yunnan Foundational Research Projects(Grant no.202001AS070025);the Major Science and Technology Special Project of Yunnan(Grant no.202002AF080002).
摘 要:In recent decades,solar collector and heat pump combinations have been widely applied to supply heat and hot water,such as in heat supply and power generation for domestic and commercial buildings and relevant applications in the manufacturing and agricultural industries.However,the solar-assisted heat pumps already in extensive use may undergo system performance deterioration in a cold environment.To solve this problem,we designed a heat pump system assisted with hot water where a water medium was used to store energy to assist the operation of the heat pump at low temperatures.Three factors were comprehensively considered:the opening degree of the electronic expansion valve,the temperature of the low-temperature heat source,and the auxiliary hot water temperature.Crossover experiments were designed with three levels for each factor,and 36 groups of experiments were carried out.The results showed that as the auxiliary hot water temperature increased,the heating capacity and the coefficient of performance also increased.Thus,the overall working efficiency of the system improved.According to the orthogonal test,the most important influencing factor of system performance was the auxiliary hot water temperature,followed by the ambient temperature and opening degree of the electronic expansion valve.These results fully demonstrated that the addition of auxiliary hot water could dramatically improve system performance.In addition,optimization of the opening degree of the electronic expansion valve produced different results,indicating that the optimal value ranged from 50%−75%.
关 键 词:Heat pump Energy reservation AUXILIARY System performance
分 类 号:TK51[动力工程及工程热物理—热能工程]
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