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Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.12128/21906
Title: CFD numerical modelling of a PV–TEG hybrid system cooled by air heat sink coupled with a single-phase inverter
Authors: Wodołażski, Artur
Howaniec, Natalia
Jura, Bartłomiej
Bąk, Andrzej
Smoliński, Adam
Keywords: photovoltaic module; thermoelectric generator; PV inverters hybrid system co-simulation
Issue Date: 2021
Citation: "Materials", 2021, iss. 19, art. no. 5800, s. 1-20
Abstract: This study presents full transient, three-dimensional numerical models of a PV–TEG hybrid module coupled with single-phase inverter by co-simulation. The influence of factors, such as wind speed, solar radiation intensity, or ambient temperature on the PV–TEG system, was also examined. The numerical model was implemented using Ansys software which accounted the phenomena of Thomson, Seebeck, and Joule’s heat place on the TEG system. Furthermore, its impact on total electrical efficiency was studied. The heat transfer surface of the passive heat sink and forced air circulation positively affected the total heat transfer, and therefore helped to maintain the electrical efficiency at a higher level. Simulation of the single-phase inverter with a PV–TEG system allows the determination of the power characteristics of the system in real time. The results of the study presented may provide a basis for performance optimization of a practical PV–TEG-inverter hybrid system co-design.
URI: http://hdl.handle.net/20.500.12128/21906
DOI: 10.3390/ma14195800
ISSN: 1996-1944
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