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Title:Analiza rezultatov projekta Trajnostna okna za prijetno bivanje : "Projektno delo za pridobitev praktičnih izkušenj in znanj študentov v delovnem okolju 2022/2023" (PDŠ UM 2022/2023)
Authors:ID Prapotnik Brdnik, Anita (Author)
ID Čuš, Peter (Author)
ID Brdnik, Andrej (Author)
ID Šprah, Zoja (Author)
ID Marolt, Aljaž (Author)
ID Stojnšek, Rok (Author)
ID Zidar, Rok (Author)
ID Horvat, Barbara (Author)
ID Krajnc, Tine (Author)
ID Blaževič, Tina (Author)
ID Zahirovič, Amina (Author)
ID Beranič, Urša (Author)
ID Škulj, Liza (Author)
Files:.pdf analiza_TOP-Bi.pdf (4,77 MB)
MD5: CB32D9E1143B39DE9F27AC3DAA42DA61
 
.pdf Katalog_TOP-Bi.pdf (3,25 MB)
MD5: 9985DA58B6E01930505A78975235A2B0
 
Language:Slovenian
Work type:Not categorized
Typology:2.14 - Project Documentation (preliminary design, working design)
Organization:FGPA - Faculty of Civil Engineering, Transportation Engineering and Architecture
UM - University of Maribor
Abstract:Projekt Trajnostna okna za prijetno bivanje (TOP-Bi) je bil izveden v okviru javnega razpisa »Projektno delo za pridobitev praktičnih izkušenj in znanj študentov v delovnem okolju 2022/2023«. Cilj projekta je bil interdisciplinarna analiza vpliva lastnosti stavbnega pohištva na energetsko učinkovitost stavb ter razvoj orodij in pristopov za boljše razumevanje toplotnih izgub in pridobitev skozi okenske sisteme. Stavbno pohištvo s prosojnimi elementi predstavlja pomemben dejavnik toplotne bilance stavb, saj omogoča tako izgube toplote kot tudi pasivni dobitki sončne energije. Njegove lastnosti so odvisne od materialov, sestave in okoljskih pogojev, kar pogosto otežuje neposredno primerjavo med različnimi sistemi ter razumevanje njihove dejanske učinkovitosti. Poleg tega ima pomembno vlogo tudi uporabniško ravnanje, zlasti pri regulaciji senčenja in prezračevanja. V okviru projekta so študenti različnih smeri razvili več dopolnjujočih se rešitev. Razvit je bil računalniški program v Pythonu za oceno potrebne toplote v kurilni sezoni glede na lastnosti izbranega stavbnega pohištva. Izvedene so bile tudi energetske simulacije objekta v okolici Maribora za primerjavo različnih tipov zasteklitev. Poleg tega je bil razvit prototip sistema za avtomatsko upravljanje senčil na osnovi okoljskih podatkov, ki omogoča optimizacijo bivalnega ugodja in zmanjšanje energijskih izgub. Dopolnilno je bila izvedena anketa o ozaveščenosti uporabnikov glede lastnosti stavbnega pohištva in vpliva njihovega ravnanja na energijsko učinkovitost stavb. Projekt izpostavlja pomen interdisciplinarnega pristopa, ki povezuje gradbeništvo, fiziko, strojništvo in prometno inženirstvo, ter poudarja potencial digitalnih orodij in pametnih sistemov pri izboljšanju energetske učinkovitosti stavb in trajnostnega bivanja.
Keywords:trajnostna gradnja, stavbno pohištvo, energetska učinkovitost, toplotne izgube, sončni dobitki, simulacije stavb, pametni sistemi, avtomatsko senčenje, interdisciplinarno sodelovanje, Python, nizkoenergijske stavbe, bivalno ugodje
Place of publishing:Maribor
Place of performance:Maribor
Publisher:Univerza v Mariboru
Year of publishing:2023
Number of pages:1 spletni vir (1 datoteka PDF ([23] str.))
PID:20.500.12556/DKUM-98358 New window
UDC:69:502.131.1
COBISS.SI-ID:281889795 New window
Publication date in DKUM:17.06.2026
Views:215
Downloads:5
Metadata:XML DC-XML DC-RDF
Categories:Misc.
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Document is financed by a project

Funder:Univerza v Mariboru
Name:"Projektno delo za pridobitev praktičnih izkušenj in znanj študentov v delovnem okolju 2022/2023"
Acronym:PDŠ UM 2022/2023

Funder:Evropska Unija, Evropski socialni sklad

Funder:RS Ministrstvo za visoko šolstvo, znanost in inovacije

Licences

License:CC BY-NC-SA 4.0, Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International
Link:http://creativecommons.org/licenses/by-nc-sa/4.0/
Description:A Creative Commons license that bans commercial use and requires the user to release any modified works under this license.
Licensing start date:08.06.2026
Applies to:This publication presents the results of the project Sustainable Windows for Comfortable Living (TOP-Bi) and is intended for educational, research, and other non-commercial purposes. It is licensed under the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License (CC BY-NC-SA 4.0).

Secondary language

Language:English
Title:Evaluation of the Results of the Project Sustainable Windows for Comfortable Living
Abstract:The project Sustainable Windows for Comfortable Living (TOP-Bi) was carried out within the public call “Project Work for Acquiring Practical Experience and Skills of Students in a Working Environment 2022/2023”. The aim of the project was to perform an interdisciplinary analysis of the impact of building envelope glazing systems on the energy efficiency of buildings and to develop tools and approaches for a better understanding of heat losses and gains through window systems. Transparent building envelope components represent a significant factor in the thermal balance of buildings, as they contribute both to heat losses and to passive solar heat gains. Their performance depends on materials, system configuration, and environmental conditions, which often makes direct comparison between different window systems difficult and complicates the assessment of their actual efficiency. In addition, user behaviour plays an important role, particularly in the regulation of shading and ventilation. Within the project, students from different disciplines developed several complementary solutions. A Python-based computational tool was created to estimate heating demand during the heating season based on the properties of selected window systems. Energy simulations were also performed for a reference building located in the Maribor region to compare different glazing configurations. Furthermore, a prototype system for automatic shading control was developed based on environmental data, enabling optimisation of indoor comfort and reduction of energy losses. In addition, a survey was conducted to assess users’ awareness of window properties and the influence of their behaviour on building energy efficiency. The project highlights the importance of an interdisciplinary approach combining civil engineering, physics, mechanical engineering, and transport engineering, and emphasises the potential of digital tools and smart systems in improving building energy efficiency and promoting sustainable living.
Keywords:sustainable construction, building envelope, energy efficiency, heat losses, solar gains, building simulation, smart systems, automatic shading, interdisciplinary collaboration, Python, low-energy buildings, thermal comfort


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