A novel photovoltaic/thermoelectric collector combined with a dual - Evaporator vapor compression system

被引:23
作者
Daghigh, Roonak [1 ]
Khaledian, Yavar [1 ]
机构
[1] Univ Kurdistan, Dept Mech Engn, Sanandaj, Iran
关键词
Hybrid solar compression cooling system; PVTE collector; Electrical efficiency; Dual-evaporator; HYBRID; ENERGY;
D O I
10.1016/j.enconman.2017.12.067
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study evaluated a dual-evaporator refrigeration system using photovoltaic-thermoelectric (PVTE) solar collector theoretically and experimentally in the weather conditions of Sanandaj city, Iran in three different modes, including one-evaporator compression refrigeration system without photovoltaic (PV) collector, dual-evaporator compression cooling system coupled in series with PVTE-air system, and compression cooling system with PVTE-evaporator in July 2016 from 8:00 am to 18:00 pm. The PVTE mode was tested generally with 22 thermoelectric modules, 11 of which were arranged in series and 11 in parallel. The results showed the coefficient of performance (COP) and consumption power of compressor in one-evaporator compression cooling system and hybrid dual-evaporator compression cooling system with PVTE collector were 3.69, 3.754 and 1.353 kW, 1.332 kW, respectively, indicating the positive effect of PVTE evaporator on the coefficient of performance and consumption power of compressor. Moreover, the findings indicated that for PVTE air and evaporator, the maximal electrical efficiency and power generation for a thermoelectric module were 0.038, 0.063W and 0.063, 1.12 W, respectively at mean solar radiation intensity of 1004 W/m(2), and electrical power generation rates of PV collector at this point for the two modes were obtained to be 0.11 W and 0.119W, respectively. These values indicate the positive effect of thermoelectric modules on the refrigeration and increased electrical efficiency of the collector.
引用
收藏
页码:156 / 167
页数:12
相关论文
共 25 条
[1]  
Bosanac M., 2003, Photovoltaic/ Thermal Solar Collectors and Their Potential in Denmark
[2]   Solar hybrid systems with thermoelectric generators [J].
Chavez-Urbiola, E. A. ;
Vorobiev, Yu. V. ;
Bulat, L. P. .
SOLAR ENERGY, 2012, 86 (01) :369-378
[3]   iSS-PseDNC: Identifying Splicing Sites Using Pseudo Dinucleotide Composition [J].
Chen, Wei ;
Feng, Peng-Mian ;
Lin, Hao ;
Chou, Kuo-Chen .
BIOMED RESEARCH INTERNATIONAL, 2014, 2014
[4]   Hybrid photovoltaic-thermosyphon water heating system for residential application [J].
Chow, TT ;
He, W ;
Ji, J .
SOLAR ENERGY, 2006, 80 (03) :298-306
[5]   Testing of two different types of photovoltaic-thermal (PVT) modules with heat flow pattern under tropical climatic conditions [J].
Dubey, Swapnil ;
Tay, Andrew A. O. .
ENERGY FOR SUSTAINABLE DEVELOPMENT, 2013, 17 (01) :1-12
[6]   Energy and exergy analyses of a bi-evaporator compression/ejection refrigeration cycle [J].
Geng, Lihong ;
Liu, Huadong ;
Wei, Xinli ;
Hou, Zhonglan ;
Wang, Zhenzhen .
ENERGY CONVERSION AND MANAGEMENT, 2016, 130 :71-80
[7]   Photovoltaic and thermoelectric indirect coupling for maximum solar energy exploitation [J].
Hajji, M. ;
Labrim, H. ;
Benaissa, M. ;
Laazizi, A. ;
Ez-Zahraouy, H. ;
Ntsoenzok, E. ;
Meot, J. ;
Benyoussef, A. .
ENERGY CONVERSION AND MANAGEMENT, 2017, 136 :184-191
[8]   Performance improvement of vapor compression cooling systems using evaporative condenser: An overview [J].
Harby, K. ;
Gebaly, Doaa R. ;
Koura, Nader S. ;
Hassan, Mohamed S. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 58 :347-360
[9]   A study on incorporation of thermoelectric modules with evacuated-tube heat-pipe solar collectors [J].
He, Wei ;
Su, Yuehong ;
Wang, Y. Q. ;
Riffat, S. B. ;
Ji, Jie .
RENEWABLE ENERGY, 2012, 37 (01) :142-149
[10]   A highly-efficient, concentrating-photovoltaic/thermoelectric hybrid generator [J].
Kil, Tae-Hyeon ;
Kim, Sanghyeon ;
Jeong, Dae-Han ;
Geum, Dae-Myeong ;
Lee, Sooseok ;
Jung, Sung-Jin ;
Kim, Sangtae ;
Park, Chan ;
Kim, Jin-Sang ;
Baik, Jeong Min ;
Lee, Ki-Suk ;
Kim, Chang Zoo ;
Choi, Won Jun ;
Baek, Seung-Hyub .
NANO ENERGY, 2017, 37 :242-247