TRNSYS公司
性能系数
热泵
混合热
空气源热泵
光伏系统
热的
被动冷却
水冷
环境科学
核工程
可再生能源
空气冷却
工艺工程
气象学
机械工程
工程类
热交换器
电气工程
物理
作者
Na Wang,Shangling Chu,Chao Cheng,Heng Zhang,Haiping Chen,Dan Gao
出处
期刊:Energy
[Elsevier BV]
日期:2024-03-25
卷期号:296: 131008-131008
被引量:7
标识
DOI:10.1016/j.energy.2024.131008
摘要
In this paper, TRNSYS is used to simulate the heating systems of air-cooling concentrating photovoltaic/thermal (CPVT) coupled air source heat pump and water-cooling CPVT coupled air source heat pump. Besides, Grasshopper is adopted for multi-objective optimization of air-cooling system. This study not only proposed two hybrid systems and enriched the research of CPVT coupled air source heat pump, but also proposed a multi-objective optimization method, which uses Grasshopper to invoke TRNSYS. Compared with the air source heat pump system, the annual average COP of heat pump in the air-cooling system increases by 22.8%, and that of the water-cooling system decreases by 6%. The primary energy saving rate of the air-cooling system is 1.06 times and 6.67 times that of the water-cooling system and the air source heat pump system. The optimized air-cooling system reduces the annual total cost by 2.83%, and increases the energy utilization coefficient by 4.76%. The proposed air-cooling system has obvious advantages in energy saving and improving COP of heat pump. This study is useful for the cost savings and energy conservation of air-cooling concentrating photovoltaic/thermal (CPVT) coupled air source heat pump systems based on urban public buildings.
科研通智能强力驱动
Strongly Powered by AbleSci AI