Enhancing energy production in a PV collector - Reflector system supervised by an optimization model: Experimental analysis and validation

被引:21
作者
Baccoli, Roberto [1 ]
Kumar, Amit [2 ]
Frattolillo, Andrea [1 ]
Mastino, Costantino [1 ]
Ghiani, Emilio [2 ]
Gatto, Gianluca [2 ]
机构
[1] Univ Cagliari, Inst Tech Phys, Via Marengo 2, I-09123 Cagliari, Italy
[2] Univ Cagliari, Dept Elect & Elect Engn, Via Marengo 2, I-09123 Cagliari, Italy
关键词
Solar energy; Booster reflector; PV collector; Optimal angle configuration; Enhancement factor; PERFORMANCE ANALYSIS; SOLAR COLLECTORS; FLAT-PLATE; FEASIBILITY; IRRADIATION; GENERATION; RESOURCES; REDUCTION; MODULES; HEAT;
D O I
10.1016/j.enconman.2020.113774
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this paper the enhanced solar energy collection of a collector coupled with a flat booster bottom reflector is experimentally evaluated. The benefit provided by augmenting a PV panel with a specular reflector is then experimentally determined. The performances of an augmented PV arrangement and a conventional PV panel are compared. Five sizes of the reflector, at their optimal angular positions, aspect ratio and overhangs, are investigated as boosters of the PV panel. Several experiments have been carried out over the summertime for the reflector size, ranging from 0.3 m(2) to 2.5 m(2). The experimental enhancement factors (EFs) are further used to validate the analytical model, which includes an exact formulation of the shadowing and irradiating effects involved in the augmented system. This explorative investigation reveals experimental enhancement factor values in the range 6% - 17.8% and shows a good quantitative agreement with the predicted values. Moreover, the experimental profile reflects the simulated curve generated by the model. A detailed analysis demonstrates that the noted discrepancy between the simulated and experimental enhancement factor can be explained by the difference between the two PV panels conversion efficiencies that can arise when the two PV panels experience different operating temperature, and uneven illumination effect which were not explored in the model.
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页数:18
相关论文
共 58 条
[1]   Energy and exergy assessment of integrating reflectors on thermal energy storage of evacuated tube solar collector-heat pipe system [J].
Abo-Elfadl, Saleh ;
Hassan, Hamdy ;
El-Dosoky, M. F. .
SOLAR ENERGY, 2020, 209 :470-484
[2]   Comparative study of PV modules with and without a tilted plane reflector [J].
Ahmad, GE ;
Hussein, HMS .
ENERGY CONVERSION AND MANAGEMENT, 2001, 42 (11) :1327-1333
[3]  
[Anonymous], 2012, SOLAR ENG THERMAL PR
[4]  
[Anonymous], 1971, ENTROPY LAW EC PROCE
[5]  
[Anonymous], 2021, ENERG CONVERS MANAGE, V229
[6]   A mathematical model of a solar collector augmented by a flat plate above reflector: Optimum inclination of collector and reflector [J].
Baccoli, R. ;
Mastino, C. C. ;
Innamorati, R. ;
Serra, L. ;
Curreli, S. ;
Ghiani, E. ;
Ricciu, R. ;
Marini, M. .
69TH CONFERENCE OF THE ITALIAN THERMAL ENGINEERING ASSOCIATION, ATI 2014, 2015, 81 :205-214
[7]   A comprehensive optimization model for flat solar collector coupled with a flat booster bottom reflector based on an exact finite length simulation model [J].
Baccoli, Roberto ;
Frattolillo, Andrea ;
Mastino, Costantino ;
Curreli, Sebastiano ;
Ghiani, Emilio .
ENERGY CONVERSION AND MANAGEMENT, 2018, 164 :482-507
[8]   ECONOMICS AND CHANGING LIFESTYLES [J].
BARBIERI, RH .
ENERGY CONVERSION AND MANAGEMENT, 1982, 22 (04) :301-307
[9]   An updated assessment of oil market disruption risks [J].
Beccue, Phillip C. ;
Huntington, Hillard G. ;
Leiby, Paul N. ;
Vincent, Kenneth R. .
ENERGY POLICY, 2018, 115 :456-469
[10]   Technical and economic analysis of a novel low-cost concentrated medium-temperature solar collector [J].
Bhusal, Yogesh ;
Hassanzadeh, Ali ;
Jiang, Lun ;
Winston, Roland .
RENEWABLE ENERGY, 2020, 146 :968-985