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Stroškovna in okoljska analiza celovite energetske prenove stanovanjske stavbe
ID Viler, Miha (Author), ID Medved, Sašo (Mentor) More about this mentor... This link opens in a new window

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Abstract
V diplomskem delu je bil cilj izboljšati energijsko učinkovitost obstoječe stavbe, ki nima izoliranega toplotnega ovoja in ima zastarele ter energetsko potratne tehnične stavbne sisteme. Vgrajeni sistemi ne zagotavljajo ustreznega bivalnega okolja in povzročajo veliko rabo energije in posledično emisije onesnažil. V delu je predstavljena trenutna zakonodaja in sveženj »Pripravljeni na 55«, ki predstavlja osnovno vodilo načrtovane energetske sanacije stavbnega fonda v Evropski povezavi do leta 2030 in naprej. Opisano je začetno stanje stanovanjske hiše in nabor izvedljivih ukrepov, hkrati pa tudi modelirano začetno in predvideno končno stanje hiše v programu PURES .XLS. Podane so rešitve za ovoj stavbe, kot tudi za vgrajene tehnične stavbne sisteme. Na koncu dela je podana stroškovna analiza in izračunana vračilna doba predlagane celovite energetske sanacije. Po izvedbi predlaganih ukrepov bo specifična potrebna toplota za ogrevanje 12,4 kWh/m2an, kar presega zahtevano učinkovitost glede na aktualni pravilnik in ustreza tudi zahtevam, ki nam povedo, da je hiša po sanaciji, energetsko veliko manj potratna in bi ji lahko dali naziv »Pasivna« hiša. Obnovljena stavba ima razmernik obnovljivih virov energije 61% in specifično potrebno skupno primarno energijo 68,1 kWh/m2an, kjer oboje ustreza trenutnemu pravilniku o učinkoviti rabi energije. Stroški take celovite energetske sanacije znašajo približno 72000€, kjer je všteta tudi vgradnja sistemov in toplotnega ovoja.

Language:Slovenian
Keywords:učinkovita raba energije, skoraj nič energijske stavbe, obnovljivi viri energije, stroškovna ustreznost investicij, energetska prenova stavb, presoja vplivov na okolje v življenjskem obdobju, zakonodaja
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[M. Viler]
Year:2024
Number of pages:XVIII, 59 str.
PID:20.500.12556/RUL-160990 This link opens in a new window
UDC:620.9:679.743.2:728.2(043.2)
COBISS.SI-ID:212232707 This link opens in a new window
Publication date in RUL:06.09.2024
Views:142
Downloads:75
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Secondary language

Language:English
Title:Cost and environmental analysis of a comprehensive energy renovation of a residential building
Abstract:
The aim of the thesis was to improve the energy efficiency of an existing building that has no insulated thermal envelope and outdated and energy-wasting technical building systems. The installed systems do not provide an adequate living environment and cause high energy consumption and consequently pollutant emissions. The work presents the current legislation and the "Ready for 55" package, which constitutes the basic guideline for the planned energy renovation of the building stock in the European Union up to 2030 and beyond. It describes the initial state of the dwelling house and the set of feasible measures, as well as the modelled initial and projected final state of the house in PURES .XLS. Solutions for the building envelope as well as for the installed technical building systems are provided. Finally, a cost analysis and a calculated payback period for the proposed comprehensive energy renovation are given. After the implementation of the proposed measures, the specific heat required for heating will be 12.4 kWh/m²an, which exceeds the required efficiency according to the current regulations and also meets the requirements which tell us that the house after renovation is much less energy consuming and could be given the title of "Passive" house. The renovated building has a renewable energy ratio of 61% and a specific total primary energy requirement of 68.1 kWh/m²/annum, both of which comply with the current Energy Efficiency Code. The cost of such a complete energy renovation is approximately 72,000€, which includes the installation of the systems and the thermal insulation.

Keywords:efficient use of energy, near-zero energy buildings, renewable energy sources, cost effectiveness of investments, energy renovation of buildings, lifetime environmental impact assessment, legislation

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