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Study on the performance of a solar assisted air source heat pump system for building heating

机译:建筑供热用太阳能辅助空气源热泵系统性能研究

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摘要

This paper proposed a new solar assisted air source heat pump system with flexible operational modes to improve the performance of the heating system. A mathematical model was established on the solar assisted air source heat pump system for building heating with a heating capacity of lOkW, and an air source heat pump unit was developed to validate the model. The effect of the solar collector area on the performance of the system running in Nanjing was studied. The results showed that the COP of the heat pump unit was enhanced with the increase of the solar radiation density during the typical sunny day in the heating season. In addition, the COP also increased in proportion to the solar collector area. Compared with the case when the solar collector area was 0 m~2, the COP increase of the heat pump and the energy-saving rate were 11.22% and 24% respectively when the solar collector area was 40m2. Meanwhile, the solar equivalent generation power efficiency could reach 11.8%.
机译:本文提出了一种具有灵活操作模式的新型太阳能辅助空气源热泵系统,以提高加热系统的性能。在太阳能辅助空气源热泵系统上建立了一个数学模型,该系统用于供热能力为10kW的建筑采暖,并开发了空气源热泵单元以验证该模型。研究了太阳能集热器面积对南京市运行系统性能的影响。结果表明,在采暖季节典型的晴天,热泵机组的COP随太阳辐射密度的增加而提高。另外,COP也与太阳能收集器面积成比例增加。与集热面积为0 m〜2的情况相比,集热面积为40 m2时,热泵的COP增加和节能率分别为11.22%和24%。同时,太阳能当量发电效率可达到11.8%。

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