Experimental Analysis of a Solar Energy Storage Heat Pump System

被引:0
作者
Haifei Chen
Guiqiang Li
Yueyue Ling
Jie Fu
Yunjie Wang
Jie Yang
Lyulin Jiang
Badiei Ali
Yang Zhang
机构
[1] Changzhou University,School of Petroleum Engineering
[2] University of Hull,School of Engineering
[3] Purdue University,School of Aeronautics and Astronautics
来源
Journal of Thermal Science | 2021年 / 30卷
关键词
solar energy; heat pump; energy storage; energy saving; thermal performance;
D O I
暂无
中图分类号
学科分类号
摘要
This paper introduces a novel solar-assisted heat pump system with phase change energy storage and describes the methodology used to analyze the performance of the proposed system. A mathematical model was established for the key parts of the system including solar evaporator, condenser, phase change energy storage tank, and compressor. In parallel to the modelling work, an experimental set-up of the proposed solar energy storage heat pump system was developed. The experimental data showed that the designed system is capable of meeting cold day heating demands in rural areas of Yanbian city located in Jilin province of China. In day-time operation, the solar heat pump system stores excess energy in the energy storage tank for heating purposes. A desired indoor temperature was achieved; the average coefficient of performance of solar heat pump was identified as 4.5, and the system showed a stable performance throughout the day. In night-time operation, the energy stored in the storage tank was released through a liquid-solid change of phase in the employed phase-change material. In this way, the provision of continuous heat for ten hours was ensured within the building, and the desired indoor air conditions were achieved.
引用
收藏
页码:1491 / 1502
页数:11
相关论文
共 64 条
[1]  
Li G(2016)Conceptual development of a novel photovoltaic-thermoelectric system and preliminary economic analysis Energy Conversion and Management 126 935-943
[2]  
Zhao X(2018)Experimental and numerical comparative investigation on a concentrating photovoltaic system Journal of cleaner production 174 1288-1298
[3]  
Ji J(2019)Experimental and comparison study on two solar dish systems with a high concentration ratio Journal of Thermal Science 28 1205-1211
[4]  
Chen H(2019)Dynamic coupling method between air-source heat pumps and buildings in China’s hot-summer/cold-winter zone Applied Energy 254 113664-1129
[5]  
Ji J(2019)Multi-objective optimisation of thermal energy storage using phase change materials for solar air systems Renewable Energy 130 1116-54
[6]  
Pei G(2018)Study on the performance of solar-assisted transcritical CO Solar Energy 174 45-32
[7]  
Chen H(2018) heat pump system with phase change energy storage suitable for rural houses Renewable and Sustainable Energy Reviews 81 22-484
[8]  
Li G(2018)Techno-economic review of solar heat pump systems for residential heating applications Energy Conversion and Management 172 472-931
[9]  
Yang J(2018)A comparative investigation of solar-assisted heat pumps with solar thermal collectors for a hot water supply system Energy Conversion and Management 174 922-84
[10]  
Li S(2017)A novel integrated heating system of solar energy and air source heat pumps and its optimal working condition range in cold regions Sustainable Cities and Society 33 70-1135