TECHNOLOGY OF EDUCATIONAL INSTITUTIONS’ RECONSTRUCTION AFTER DESTRUCTION CAUSED BY ARMED CONFLICT ON THE TERRITORY OF UKRAINE RIGIDITY
DOI:
https://doi.org/10.31650/2786-6696-2025-13-125-132Keywords:
reconstruction, educational facilities, rebuilding, educational environment safety, energy efficiency, innovative technologies, civil protection shelters, infrastructure resilience.Abstract
The article is of a review nature and is devoted to the analysis of modern trends in technologies for the restoration of secondary education institutions after destruction as a result of the armed conflict in Ukraine. It substantiates the urgent need to develop a new, forward-looking model for restoring educational infrastructure, grounded in the principles of energy efficiency, technological innovation, resilience, and elevated safety standards. In the context of post-war recovery, education is recognized as a critical pillar for societal stability and sustainable development, making the reconstruction of schools a strategic priority for the country.
The study includes a thorough analysis of the existing regulatory and legal framework that governs reconstruction efforts. Key stages of the construction and design cycle are outlined, such as structural assessment of damaged buildings, development of project and technical documentation, coordination of civil protection strategies, and implementation of construction and installation activities. Special focus is placed on the engineering and architectural aspects of building safe and resilient educational spaces capable of withstanding future threats.
Furthermore, the article explores the integration of protective infrastructure, such as reinforced shelters, early warning systems, and optimized evacuation paths, into school design. Beyond physical protection, the study emphasizes the psychological and emotional well-being of students and educators. This includes the adoption of human-centered architectural approaches, inclusive spatial planning, and flexible, adaptive design that meets the diverse needs of school communities.
A comprehensive reconstruction model is proposed, incorporating innovative building technologies, resource-efficient and sustainable materials, and a strategic methodology tailored to post-conflict conditions. This integrated approach aims to create durable, functionally advanced, and socially safe educational environments that respond to both current challenges and future demands.
References
[1] "Standarty ta normy proiektuvannia". Natsionalna rada z vidnovlennia Ukrainy. 2022. [Online]. Available: https://restoration.gov.ua/4489/standarty_ta_normy/70514/70515.pdf. Accessed on: May 01, 2025.
[2] "Rozrobleni metodychni rekomendatsii shchodo skladannia zavdannia na proiektuvannia dlia rekonstruktsii zruinovanykh budivel shkil". Konfederatsiia budivelnykiv Ukrainy. 2023. [Online]. Available: https://kbu.org.ua/news/rozrobleni-metodychni-rekomendatsii-shchodo-skladannia-zavdannia-na-proiektuvannia-dlia-rekonstruktsii-zruinovanykh-budivel-shkil. Accessed on: May 01, 2025.
[3] "Metodychni rekomendatsii shchodo skladannia zavdannia na proiektuvannia dlia rekonstruktsii zruinovanykh budivel". Departament ekonomiky ta investytsii Kyivskoi miskoi derzhavnoi administratsii. 2023. [Online]. Available: https://desn.kyivcity.gov.ua/news/metodychni-rekomendatsii-shchodo-skladannia-zavdannia-na-proektuvannia-dlia-rekonstruktsii-zruinovanykh-budivel. Accessed on: May 01, 2025.
[4] "Rozrobleni metodychni rekomendatsii shchodo skladannia zavdannia na proiektuvannia dlia rekonstruktsii zruinovanykh budivel shkil". Upravlinnia mistobuduvannia ta arkhitektury. 2023. [Online]. Available: https://um-osvita.gov.ua/3108-rozrobleni-metodychni-rekomendatsii-shchodo-skladannia-zavdannia-na-proektuvannia-dlia-rekonstruktsii-zruinovanykh-budivel-shkil. Accessed on: May 01, 2025.
[5] "Vidbudova Ukrainy: Ministerstvo rozvytku hromad ta terytorii zatverdylo Metodychni rekomendatsii shchodo rekonstruktsii zruinovanykh budivel shkil". Kyiv Post. 2023. [Online]. Available: https://www.kyivpost.com/uk/post/38316. Accessed on: May 01, 2025.
[6] O.V. Haiduk, T.M. Herliand, N.V. Kulalaiev, N.V. Pivtoratska, T.V. Piatynchuk, Tekhnolohii uteplennia fasadiv budivel. Pidruchnyk. Zhytomyr: «Polissia», 2021.
[7] V.R. Serdiuk, S.Yu. Franyshyna, O.V. Khrystich, "Orhanizatsiino-tekhnolohichni zakhody termomodernizatsii zastariloho zhytlovoho fondu", Visnyk Vinnytskoho politekhnichnoho instytutu, no. 2, pp. 6-17, 2022.
[8] DSTU 9191:2022. Teploizoliatsiia budivel. Metod vyboru teploizoliatsiinoho materialu dlia uteplennia budivel. Tekhnichnyi komitet standartyzatsii "enerhoefektyvnist budivel i sporud" (TK 302). Derzhavne pidpryiemstvo "Derzhavnyi naukovo-doslidnyi instytut budivelnykh konstruktsii". 2023.
[9] A. Аtynian, M. Dzhalalov, S. Butnik, R. Tkachenko, I. Hovorukha, "Improvement of technology of production of crushed stone-mastic asphalt concrete mixture by adding reinforcing additives", Veda a perpektivy, no. 6 (37), 2024.
[10] A. Atynian, E. Bukhanova, A. Zhyhlo, "Enerhosberezhenye pry yspolzovanyy teployzoliatsyonnekh stenovekh materyalov na osnove hypsovekh yzdelyi", Suchasni tekhnolohii ta metody rozrakhunkiv u budivnytstvi, vypusk 5, pp. 345-350, 2016.
[11] D. Zaitsev, A. Klimchuk, G. Balasanian, "Analіz osnovnikh sposobіv termomodernіzatsії budіvel ta metodika їkh vprovadzhennya", Vіsnik Natsіonalnogo tekhnіchnogo unіversitetu "HPІ". Serіya: Yenergetichni ta teplotekhnichni protsesi y ustatkuvannya, 1(17), pp. 156-160, 2015. https://doi.org/10.20998/2078-774X.2015.17.24.
[12] DBN V.2.6-31:2006. Konstrukcii zdanij i sooruzhenij. Teplovaja izoljacija zdanij. Kiev: Minstroj Ukrainy, 2006.
[13] V. Corrado, "Energy Efficiency in Buildings: A Review of Current Trends and Future Directions in the EU", Energy and Buildings (Elsevier), [Online]. Available: https://www.researchgate.net/publication/329636306_Energy_efficiency_in_buildings_research_perspectives_and_trends. Accessed on: May 01, 2025.
[14] A. Lis, "Thermal Modernization of Residential Buildings in Europe: Policies, Technologies, and Case Studies", Sustainable Cities and Society, 2023. [Online]. Available: https://www.researchgate.net/publication/375279323. Accessed on: May 01, 2025.
[15] T. Ge, J. Peso, W-C. Yas, B.T. Tex, S. You. "Assessment of the renewable energy generation towards net-zero energy buildings", Energy and Buildngs, 256, 2022. [Online]. Available: https://doi.org/10.1016/j.enbuild.2021.111755. Accessed on: May 01, 2025.
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