Thermal performance analysis of a new refrigerant-heated radiator coupled with air-source heat pump heating system

被引:43
作者
Shao, Suola [1 ]
Zhang, Huan [1 ,2 ]
You, Shijun [1 ,2 ]
Zheng, Wandong [1 ,2 ]
Jiang, Lingfei [1 ]
机构
[1] Tianjin Univ, Sch Environm Sci & Engn, Haihe Educ Area, Tianjin 300350, Peoples R China
[2] Tianjin Univ, Minist Educ China, Key Lab Efficient Utilizat Low & Medium Grade Ene, Tianjin 300350, Peoples R China
基金
美国国家科学基金会;
关键词
Refrigerant-heated radiator; Air-source heat pump; Thermal performance; Indoor thermal comfort;
D O I
10.1016/j.apenergy.2019.04.032
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Air-source heat pump (ASHP) is considered to be one of the most energy conservation heating system in the areas without district heating. To improve the performance of the ASHP heating system, a new type of refrigerant heated radiator (RHR) is proposed. As a new direct-condensation terminal, it avoids the secondary heat exchange and is conducive to reduce the condensing temperature and heat loss. Experiments are conducted to investigate the temperature and operating characteristics of the heating system with the new radiator, as well as the thermal performance and system efficiency during the heating period. The results indicate that the radiator has favorable thermal performance with the heat flux varies from 89.2 W/m(2) to 211.4 W/m(2) during the testing period. Heat storage material is employed in the radiator to maintain the stability of indoor thermal environment during the defrosting process, and it can provide the heat of 750.9-1699.6 kJ. The convective heat transfer coefficient of the RHR was regressed and the coefficient of performance (COP) of the new system could be as high as 3.5 during the tests. Meanwhile, the ASHP heating system with RHR is superior in the indoor thermal comfort with the reasonable indoor PMV and lower vertical temperature gradient. It is demonstrated that the refrigerant-heated radiator matches well with the heat pump heating system, and can effectively improve the thermal performance and indoor thermal environment, as well as it has significant effects on the application of ASHP in the severe cold areas.
引用
收藏
页码:78 / 88
页数:11
相关论文
共 36 条
[1]  
[Anonymous], 1970, THERMAL COMFORT
[2]  
[Anonymous], 2004, 55 ASHRAE
[3]   Frost retardation of an air-source heat pump by the hot gas bypass method [J].
Byun, Ju-Suk ;
Lee, Jinho ;
Jeon, Chang-Duk .
INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2008, 31 (02) :328-334
[4]   An experimental study on a novel radiant-convective heating system based on air source heat pump [J].
Dong, Jiankai ;
Zhang, Long ;
Deng, Shiming ;
Yang, Bin ;
Huang, Shun .
ENERGY AND BUILDINGS, 2018, 158 :812-821
[5]   Defrosting performances of a multi-split air source heat pump with phase change thermal storage [J].
Dong, Jiankai ;
Li, Shuo ;
Yao, Yang ;
Jiang, Yiqiang ;
Tian, Yu ;
Tian, Hao .
INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2015, 55 :49-59
[6]  
[范亚云 Fan Yayun], 2002, [太阳能学报, Acta Engineering Solaris Sinica], V23, P580
[7]   Thermal comfort condition assessment in test buildings with different heating/cooling systems and wall envelopes [J].
Gendelis, Stanislavs ;
Jakovics, Andris ;
Ratnieks, Janis .
11TH NORDIC SYMPOSIUM ON BUILDING PHYSICS (NSB2017), 2017, 132 :153-158
[8]   A low energy demand scenario for meeting the 1.5°C target and sustainable development goals without negative emission technologies [J].
Grubler, Arnulf ;
Wilson, Charlie ;
Bento, Nuno ;
Boza-Kiss, Benigna ;
Krey, Volker ;
McCollum, David L. ;
Rao, Narasimha D. ;
Riahi, Keywan ;
Rogelj, Joeri ;
De Stercke, Simon ;
Cullen, Jonathan ;
Frank, Stefan ;
Fricko, Oliver ;
Guo, Fei ;
Gidden, Matt ;
Havlik, Petr ;
Huppmann, Daniel ;
Kiesewetter, Gregor ;
Rafaj, Peter ;
Schoepp, Wolfgang ;
Valin, Hugo .
NATURE ENERGY, 2018, 3 (06) :515-527
[9]   Preliminary Analysis on the Different Heating Technologies in a Rural Area of Shandong Province, China [J].
Huang, Xiaokai ;
Fang, Huixin ;
Zhang, Linfang ;
Liu, Jiying ;
Zhang, Linhua .
10TH INTERNATIONAL SYMPOSIUM ON HEATING, VENTILATION AND AIR CONDITIONING, ISHVAC2017, 2017, 205 :1461-1468
[10]   Air source heat pump water heater: Dynamic modeling, optimal energy management and mini-tubes condensers [J].
Ibrahim, Oussama ;
Fardoun, Farouk ;
Younes, Rafic ;
Louahlia-Gualous, Hasna .
ENERGY, 2014, 64 :1102-1116