Evaluation of thermal management of photovoltaic solar cell via hybrid cooling system of phase change material inclusion hybrid nanoparticles coupled with flat heat pipe

被引:0
作者
Gad, Ramadan [1 ,2 ]
Mahmoud, Hatem [3 ,4 ]
Ookawara, Shinichi [5 ]
Hassan, Hamdy [1 ,6 ]
机构
[1] Egypt Japan Univ Sci & Technol E JUST, Energy Resources Engn Dept, Alexandria, Egypt
[2] Mansoura Univ, Fac Engn, Mech Power Engn Dept, Mansoura, Egypt
[3] Egypt Japan Univ Sci & Technol E JUST, Environm Engn Dept, Alexandria, Egypt
[4] Aswan Univ, Engn Fac, Dept Architecture Engn, Aswan, Egypt
[5] Tokyo Inst Technol, Dept Chem Sci & Eng, Tokyo, Japan
[6] Assiut Univ, Fac Engn, Mech Power Engn Dept, Assiut, Egypt
关键词
Flat heat pipe; Photovoltaic solar cell; Hybrid nanoparticles; Phase change material; Thermal management; 4E evaluation; ENERGY-STORAGE; TEMPERATURE REGULATION; NATURAL-CONVECTION; EXERGY ANALYSIS; PERFORMANCE; PCM; EFFICIENCY; COLLECTOR; ENHANCEMENT; NANOFLUID;
D O I
暂无
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
An evaluation of photovoltaic solar cell (PV) thermal regulation via a hybrid cooling system of flat heat pipes (HP) coupled with phase change material (PCM) without and with the inclusion of hybrid nanoparticles is investigated. The evaluation is based on energetic, exergetic, economic, and environmental (4E) approaches. A complete transient mathematical model is constructed and numerically solved using Runge-Kutta homemade program via MATLAB software. Two PCM (SP31 and SP15-gel) are used to investigate the performance of the hybrid cooling system in summer and winter, respectively. The data are based on the climate conditions of upper Egypt. Results show that the HP-PCM cooling system achieves higher performance than natural solar panel cooling and boosts using hybrid nanoparticles. Furthermore, the photovoltaic solar cell exergy efficiency is higher than that of PCM. The cell's operating temperature was maximally reduced by 20.9 degrees C and 18.3 degrees C, while the solar panel efficiency improved by 11.5 % and 9 % using SP31 and SP15-gel, respectively, compared with the conventional solar cell. The proposed cooling system with hybrid nanoparticles maximally achieves a daily energy efficiency of 56.45 % and 54.45 %, compared with 8.77 % and 7.84 % for the conventional solar cell system using SP31 and SP15-gel, respectively. SP31/hybrid-nano achieved average exergy efficiency of 13.23 %, while the maximum value accounted for SP15-gel/hybrid-nano at 14.98 %. The hybrid cooling system pro-duction cost is 0.0899 $/kWh, while the conventional system is 0.105 $/kWh. A hybrid cooling system based on CO2 mitigation rates is highly effective compared to the conventional one.
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页数:23
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共 77 条
  • [11] Exergy analysis of a high concentration photovoltaic and thermal system for comprehensive use of heat and electricity
    Chen, Haifei
    Li, Guiqiang
    Zhong, Yang
    Wang, Yunjie
    Cai, Baorui
    Yang, Jie
    Badiei, Ali
    Zhang, Yang
    [J]. ENERGY, 2021, 225
  • [12] Cooling performance of flat plate heat pipes with different liquid filling ratios
    Chen, Jung-Shun
    Chou, Jung-Hua
    [J]. INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2014, 77 : 874 - 882
  • [13] CHURCHILL SW, 1975, INT J HEAT MASS TRAN, V18, P1323, DOI [10.1016/0017-9310(75)90243-4, 10.1016/0017-9310(75)90222-7]
  • [14] Demirel Y., 2014, NONEQUILIBRIUM THERM, P177, DOI [10.1016/B978-0-444-59557-7.00004-7, DOI 10.1016/B978-0-444-59557-7.00004-7]
  • [15] A review of salt hydrates for seasonal heat storage in domestic applications
    Donkers, P. A. J.
    Sogutoglu, L. C.
    Huinink, H. P.
    Fischer, H. R.
    Adan, O. C. G.
    [J]. APPLIED ENERGY, 2017, 199 : 45 - 68
  • [16] Thermal management of solar cells using a nano-coated heat pipe plate: an indoor experimental study
    Du, Yanping
    Le, Nam Cao Hoai
    Chen, Dong
    Chen, Huaying
    Zhu, Yonggang
    [J]. INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2017, 41 (06) : 867 - 876
  • [17] Toward a highly efficient photovoltaic thermal module: Energy and exergy analysis
    Eisapour, Amir Hossein
    Eisapour, M.
    Hosseini, M. J.
    Shafaghat, A. H.
    Sardari, P. Talebizadeh
    Ranjbar, A. A.
    [J]. RENEWABLE ENERGY, 2021, 169 : 1351 - 1372
  • [18] Performance analysis of a new concentrator photovoltaic system integrated with phase change material and water jacket
    Emam, Mohamed
    Ahmed, Mahmoud
    [J]. SOLAR ENERGY, 2018, 173 : 1158 - 1172
  • [19] Energy, exergy, and economic assessment of thermal regulation of PV panel using hybrid heat pipe-phase change material cooling system
    Gad, Ramadan
    Mahmoud, Hatem
    Ookawara, Shinichi
    Hassan, Hamdy
    [J]. JOURNAL OF CLEANER PRODUCTION, 2022, 364
  • [20] Design and analysis of a concentrating PV/T system with nano fl uid based spectral beam splitter and heat pipe cooling
    Han, Xinyue
    Zhao, Xiaobo
    Chen, Xiaobin
    [J]. RENEWABLE ENERGY, 2020, 162 : 55 - 70