Investigation on the effect of different coated absorber plates on the thermal efficiency of the flat-plate solar collector

被引:45
作者
Sakhaei, Seyed Ali [1 ]
Valipour, Mohammad Sadegh [1 ]
机构
[1] Semnan Univ, Fac Mech Engn, Semnan 1911135131, Iran
关键词
Flat-plate collector; Coated absorber plate; Thermal efficiency; ASHRAE Standard; Removed energy parameter; FRICTION FACTOR CHARACTERISTICS; PARABOLIC TROUGH COLLECTORS; HEAT-TRANSFER ENHANCEMENT; PERFORMANCE; COATINGS; NANOFLUID; SYSTEM; OPTIMIZATION; ABSORPTION; SIMULATION;
D O I
10.1007/s10973-019-09148-x
中图分类号
O414.1 [热力学];
学科分类号
摘要
The aim of the present work is to compare thermal efficiency of three flat-plate collectors, which are different in the type of coatings used in the absorber plate. The thermal efficiency of the collector was investigated using three types of absorber plate: the black painted, the black chrome coating, and the carbon coating. The thermal performance of the collectors was considered based on American Society of Heating, Refrigerating and Air-Conditioning Engineers Standard 93 (2010). The volume flow rate varied from 0.5 to 1.5 L min(-1). The field emission scanning electron microscope images demonstrated that the carbon coating had high absorption due to trapping the light and avoiding the reflection of the light. The collector with the carbon-coated absorber plate at the flow rate of 1.5 L min(-1) has the maximum thermal efficiency of approximately 69.4%. Furthermore, the thermal efficiency of the carbon-coated absorber plate and black chrome-coated absorber plate is averagely 13% and 11.3% higher than the black-painted absorber plate, respectively. Additionally, the removed energy parameter (FRULat the flow rate of 1.5 L min(-1) decreases approximately 35.4% for the collector with the carbon-coated absorber plate and 28.4% for the collector with the black chrome-coated absorber plate compared to the black-painted absorber plate.
引用
收藏
页码:1597 / 1610
页数:14
相关论文
共 37 条
[11]   Optical and structural analysis of solar selective absorbing coatings based on AlSiOx:W cermets [J].
Dias, D. ;
Rebouta, L. ;
Costa, P. ;
Al-Rjoub, A. ;
Benelmeki, M. ;
Tavares, C. J. ;
Barradas, N. P. ;
Alves, E. ;
Santilli, P. ;
Pischow, K. .
SOLAR ENERGY, 2017, 150 :335-344
[12]  
Duffie JA, 2013, SOLAR ENGINEERING OF THERMAL PROCESSES, 4TH EDITION, P1, DOI 10.1002/9781118671603
[13]  
Foste S, 2011, 30 ISES BIENN SOL WO, V3, P2469, DOI [10.18086/swc.2011.19.14, DOI 10.18086/SWC.2011.19.14]
[14]   TRANSPARENT HEAT-REFLECTING COATINGS FOR SOLAR APPLICATIONS BASED ON HIGHLY DOPED TIN OXIDE AND INDIUM OXIDE [J].
FRANK, G ;
KAUER, E ;
KOSTLIN, H ;
SCHMITTE, FJ .
SOLAR ENERGY MATERIALS, 1983, 8 (04) :387-398
[15]   Experimental study of heat transfer enhancement in a flat-plate solar water collector with wire-coil inserts [J].
Garcia, Alberto ;
Herrero Martin, Ruth ;
Perez-Garcia, Jose .
APPLIED THERMAL ENGINEERING, 2013, 61 (02) :461-468
[16]   Experimental investigation of heat transfer and friction factor characteristics of thermosyphon solar water heater system fitted with spacer at the trailing edge of Left-Right twisted tapes [J].
Jaisankar, S. ;
Radhakrishnan, T. K. ;
Sheeba, K. N. ;
Suresh, S. .
ENERGY CONVERSION AND MANAGEMENT, 2009, 50 (10) :2638-2649
[17]   Experimental investigation of thermal performance and entropy generation of a flat-plate solar collector filled with porous media [J].
Jouybari, H. Javaniyan ;
Saedodin, S. ;
Zamzamian, A. ;
Nimvari, M. Eshagh .
APPLIED THERMAL ENGINEERING, 2017, 127 :1506-1517
[18]   Effects of porous material and nanoparticles on the thermal performance of a flat plate solar collector: An experimental study [J].
Jouybari, H. Javaniyan ;
Saedodin, S. ;
Zamzamian, A. ;
Nimvari, M. Eshagh ;
Wongwises, S. .
RENEWABLE ENERGY, 2017, 114 :1407-1418
[19]  
Kasaeian A, 2016, INT J RENEW ENERGY R, V6, P15
[20]   A review on the applications of nanofluids in solar energy systems [J].
Kasaeian, Alibakhsh ;
Eshghi, Amin Toghi ;
Sameti, Mohammad .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2015, 43 :584-598