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Analiza prehoda iz kurilnega olja in lesne biomase na fotonapetostno elektrarno in toplotno črpalko v enodružinski hiši
ID Kostelec, Gašper (Author), ID Senegačnik, Andrej (Mentor) More about this mentor... This link opens in a new window

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Abstract
Zaključna naloga analizira prehode iz tradicionalnih energentov na obnovljive vire, s poudarkom na izračunu investicij in prihrankov izpustov CO2. Opisane so naprave, kot so sončne elektrarne, toplotna črpalka in električni avtomobil, ki bi lahko zagotovile trajnosten prehod. Izračuni zajemajo proizvedeno toploto, potrebne količine energentov, izpuste CO2 ter vračilno dobo investicije. Rezultati kažejo, da sta kurilno olje in netrajnostna lesna biomasa največja onesnaževalca, medtem ko imamo največjo korist, če v prihodnosti mišljen prehod opravimo naenkrat, pri tem pa upoštevamo pravilno dimenzioniranje fotovoltaičnih sistemov.

Language:Slovenian
Keywords:obnovljivi viri, investicija, izpusti CO2, toplota ogrevanja, goriva, fotonapetostna elektrarna
Work type:Bachelor thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2024
PID:20.500.12556/RUL-161152 This link opens in a new window
Publication date in RUL:07.09.2024
Views:31
Downloads:32
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Secondary language

Language:English
Title:Transition analysis from heating oil and wood biomass to a photovoltaic power plant and a heat pump in a single-family house
Abstract:
The thesis analyzes transitions from traditional energy sources to renewable ones, with a focus on calculating investments and CO2 emissions savings. The study describes devices such as solar power plants, heat pumps, and electric vehicles, which could ensure a sustainable transition. The calculations include produced heat, required amounts of energy sources, CO2 emissions, and the payback period of the investment. The results indicate that heating oil and non-sustainable wood biomass are the biggest polluters, while the greatest benefit is achieved if future planned transition is made all at once, taking into account the proper sizing of photovoltaic systems.

Keywords:renewable sources, investment, CO2 emissions, heating energy, fuels, photovoltaic power plant

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