Povzetek

In this work, the steady-state spatial temperature distribution in commercial high-efficiency crystalline silicon PV modules is studied using different FEM-based thermal models that encompass conductive, convective, and radiative heat transfer mechanisms. The results show that the lateral temperature distribution within the PV module depends on the module inclination angle and may be highly inhomogeneous, with a temperature difference of ▫$\backapprox$▫ 5 °C between its warmest and coolest solar cells. Furthermore, It is demonstrated that wind plays a crucial role in determining the operating temperature of PV devices. Specifically, it is shown that forced convection has an even more significant positive effect at higher wind speeds and larger PV module dimensions since the transformation of laminar to turbulent wind contributes to additional cooling. Finally, the power losses associated with the lateral temperature variations across the PV module are analyzed. The results show that the effect of temperature inhomogeneity plays a negligible role in the performance of standard single-junction silicon PV modules due to a very small temperature coefficient of the solar cell short-circuit current.

Ključne besede

kristalnosilicijevi PV moduli;termično modeliranje na osnovi metode končnih elementov;mehanizmi prenosa toplote;temperaturna porazdelitev;izguba moči PV modula zaradi temperaturne nehomogenosti;crystalline silicon PV modules;FEM-based thermal modeling;heat transfer mechanisms;temperature distribution;temperature inhomogeneity-induced PV module power loss;

Podatki

Jezik: Angleški jezik
Leto izida:
Tipologija: 1.01 - Izvirni znanstveni članek
Organizacija: UL FE - Fakulteta za elektrotehniko
UDK: 621.383.51
COBISS: 220284931 Povezava se bo odprla v novem oknu
ISSN: 2513-0390
Št. ogledov: 122
Št. prenosov: 49
Ocena: 0 (0 glasov)
Metapodatki: JSON JSON-RDF JSON-LD TURTLE N-TRIPLES XML RDFA MICRODATA DC-XML DC-RDF RDF

Ostali podatki

Sekundarni jezik: Slovenski jezik
Sekundarne ključne besede: kristalnosilicijevi PV moduli;termično modeliranje na osnovi metode končnih elementov;mehanizmi prenosa toplote;temperaturna porazdelitev;izguba moči PV modula zaradi temperaturne nehomogenosti;
Vrsta dela (COBISS): Članek v reviji
Strani: 11 str.
Letnik: ǂVol. ǂ
Zvezek: ǂiss. ǂ, [article no.] 2401026
Čas izdaje: 2024
DOI: 10.1002/adts.202401026
ID: 26048598
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