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Požarno tveganje sončnih elektrarn
ID Urbanija, Timotej (Author), ID Schnabl, Simon (Mentor) More about this mentor... This link opens in a new window

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Abstract
V diplomskem delu sem obravnaval požarno tveganje sončnih elektrarn. Predstavil sem zgodovino razvoja sončnih celic, sestavo, vrste, delovanje, njihove ključne komponente, ki predstavljajo povečano nevarnost za nastanek požara. Poudarek sem dal na pravilno izvedbo, montažo in najpogostejše vzroke za nastanek požara. Predstavil sem tehnične in tudi organizacijske ukrepe ter same postopke gašenja gasilcev. S pomočjo FMEA analize sem ocenil požarno tveganje posameznih komponent ter na hipotetičnem primeru sončne elektrarne določil najbolj kritične nevarnosti. Ugotovil sem, da največje požarno tveganje predstavlja enosmerni del sistema, predvsem slabo izvedeni spoji, poškodovani DC kabli in nestrokovna montaža, ki lahko povzročijo električni oblok in posledično požar. Zelo pomembni so pravilna namestitev sončnih celic, redno vzdrževanje in pregled sistema. Ugotovil sem tudi, da optimizatorji izboljšajo požarno varnost, saj omogočajo zmanjšanje napetosti in boljši nadzor nad sistemom.

Language:Slovenian
Keywords:sončne elektrarne, tveganja za požar, požarna varnost, elektrika
Work type:Bachelor thesis/paper
Organization:FKKT - Faculty of Chemistry and Chemical Technology
Year:2026
PID:20.500.12556/RUL-188019 This link opens in a new window
Publication date in RUL:17.09.2026
Views:148
Downloads:50
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Secondary language

Language:English
Title:Fire risk of solar sistem
Abstract:
In this bachelor's thesis, I examined the fire risk associated with photovoltaic systems. I presented the history of the development of solar cells, their structure, types, operating principles, and key components that may pose an increased fire hazard. Particular emphasis was placed on proper installation and assembly, as well as on the most common causes of fires. I also presented technical and organizational measures and firefighting procedures. Using FMEA, I assessed the fire risk of individual components and identified the most critical hazards through a hypothetical example of a photovoltaic system. I found that the greatest fire risk is associated with the DC side of the system, particularly poorly executed connections, damaged DC cables, and improper installation, which can cause electric arcs and consequently lead to fire. Proper installation of solar modules, regular maintenance, and system inspections are therefore very important. I also found that power optimizers improve fire safety by enabling voltage reduction and better system monitoring.

Keywords:photovoltaic systems, fire risk, fire safety, electricity

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