Energy and Exergy Analysis of a Hybrid Photovoltaic-Thermoelectric System with Passive Thermal Management

被引:0
作者
Montero, Francisco J. [1 ,2 ]
Vasquez Carrera, Paco Jovanni [3 ]
Hidalgo Osorio, William Armando [3 ]
Acebo Arcentales, Aleph Salvador [4 ]
Calvopina, Hector [1 ]
Baba, Yousra Filali [5 ]
机构
[1] Univ Fuerzas Armadas ESPE, Dept Ciencias Energia & Mecan, 1715-231B, Sangolqui 171103, Ecuador
[2] Pontificia Univ Catolica Chile, Escuela Ingn, Dept Ingn Mecan & Metalurg, Vicuna Mackenna 4860, Santiago 7820436, Chile
[3] Univ Tecn Cotopaxi, Extens La Mana, La Mana 050201, Ecuador
[4] Univ Laica Eloy Alfaro Manabi ULEAM, Fac Ingn Ind & Arquitectura, Manta 130212, Ecuador
[5] Mohammed V Univ Rabat, Ecole Natl Super Arts & Metiers Rabat ENSAM, Thermal & Energy Res Team ERTE, Rabat 08007, Morocco
关键词
heat pipe; hybrid system; photovoltaic; thermoelectric; radiative cooling; heat sink; PERFORMANCE; COLLECTOR;
D O I
10.3390/en18081900
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
Hybrid photovoltaic (PV) and thermoelectric generator (TEG) systems combine heat and light energy harvesting in a single module by utilizing the entire solar spectrum. This work analyzed the feasibility and performance of a hybrid photovoltaic-thermoelectric generator system with efficient thermal management by integrating heat pipe (HP), radiative cooling (RC), and heat sink (HS) systems. The proposed system effectively reduces the PV operation temperature by evacuating the residual heat used in the TEG system to generate an additional amount of electricity. The remaining heat is evacuated from the TEG's cold side to the atmosphere using RC and HS systems. This study also analyzed the inclusion of two TEG arrays on both sides of the HP condenser section. This numerical analysis was performed using COMSOL Multiphysics 5.5 software and was validated by previous analysis. The performance was evaluated through an energy and exergy analysis of the TEG and PV systems. Enhancing the thermal management of the hybrid PV-TEG system can increase energy production by 2.4% compared to a PV system operating under the same ambient and solar radiation conditions. Furthermore, if the proposed system includes a second array of TEG modules, the energy production increases by 5.8% compared to the PV system. The exergy analysis shows that the enhancement in the thermal management of the PV operating temperature decreases the thermal exergy efficiency of the proposed system but increases the electricity exergy efficiency. Including TEG modules on both sides of the condenser section of the HP shows the system's best thermal and electrical performance. These results may be helpful for the optimal design of realistic solar-driven hybrid systems for globally deserted locations.
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页数:27
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