RCIN and OZwRCIN projects

Object

Title: Architectural and planning solutions for sustainable urban development

Subtitle:

Europa XXI 50 (2026)

Publisher:

IGiPZ PAN

Place of publishing:

Warszawa

Description:

29 cm

Abstract:

Architectural and planning solutions that support sustainable urban development are crucial for modern urbanism in the context of sustainable development goals. This study systematises approaches to spatial planning that balance functionality, safety, aesthetic quality, and adaptability. A qualitative analytical methodology was applied, including regulatory analysis of Ukrainian urban planning documents and a case study of the Fayna Town residential complex. Key findings include strategies for interactive public spaces, flexible residential units, and psychologically comfortable environments. The study highlights that urban design should integrate physical, social, environmental, and technological dimensions to ensure long-term viability, environmental responsibility, and quality of life.

References:

Adeyemi, A. B., Ohakawa, T. C., Okwandu, A. C., Iwuanyanwu, O., & Ifechukwu, G. O. (2024). High-density affordable housing: Architectural strategies for maximizing space and functionality. Journal of Urban Design and Development, 19(2), 123-140. https://doi.org/10.13140/RG.2.2.22191.96169 DOI
Akbarova, S., & Akbarli, R. (2023). Engineering estimation of air regime of building facade systems with fire cut offs. Reliability Theory and Applications, 18(5), 186-194. https://doi.org/10.24412/1932-2321-2023-575-186-194 DOI
Allam, Z., Bibri, S. E., Jones, D. S., Chabaud, D., & Moreno, C. (2022). Unpacking the '15-minute city' via 6G, IoT, and digital twins: Towards a new narrative for increasing urban efficiency, resilience, and sustainability. Sensors, 22(4), 1369. https://doi.org/10.3390/s22041369 DOI
Almulhim, A. I., Sharifi, A., Aina, Y. A., Ahmad, S., Mora, L., Filho, W. L., & Abubakar, I. R. (2024). Charting sustainable urban development. Nature Cities, 1, 677-685. https://doi.org/10.1038/s44284-024-00117-6 DOI
Anh, D. B. H., Tien, N. H., Chi, D. T. P., & Phung, T. M. (2021). The impact of climate change on sustainable architecture in smart cities. International Journal Multidisciplinary Research and Growth Evaluation, 2(4), 99-102.
Anthony, B., Petersen, S. A., Helfert, M., & Guo, H. (2021). Digital transformation with enterprise architecture for smarter cities: a qualitative research approach. Digital Policy, Regulation and Governance, 23(4), 355-376. https://doi.org/10.1108/DPRG-04-2020-0044 DOI
Aravena, A., & Iacobelli, A. (2012). Elemental: Incremental Housing and Participatory Design Manual. Berlin: Hatje Cantz. Retrieved from https://www.hatjecantz.com/products/17221-elemental
Archmatika (2025). PRO-apartments: What's the difference between buying a car and an apartment? Archimatika. Retrieved from https://archimatika.com/pro-apartment
Bahalul Haque, A. K. M., Bhushan, B., & Dhiman, G. (2022). Conceptualizing smart city applications: Requirements, architecture, security issues, and emerging trends. Expert Systems, 39(5), e12753. https://doi.org/10.1111/exsy.12753 DOI
Bazylevych, V. (2023). Dosiahnennia Tsilei Staloho Rozvytku Pid Chas Vidbudovy Ukrainy [Achieving the sustainable development goals during the reconstruction of Ukraine]. Urban Development and Spatial Planning, 83, 29-37. https://doi.org/10.32347/2076-815x.2023.83.29-37 DOI
Bezlyubchenko, O., Apatenko, T., & Babenko, M. (2022). Metody ta Peredumovy Arkhitekturno-Planuvalnoho Vdoskonalennia Zastariloho Zhytlovoho Fondu [Methods and prerequisites for architectural-planning improvement of obsolete housing fund: Array]. Municipal Economy of Cities, 1(168), 30-39. https://doi.org/10.33042/2522-1809-2022-1-168-30-39 DOI
Bibri, S. E. (2021). Data-driven smart sustainable cities of the future: Urban computing and intelligence for strategic, short-term, and joined-up planning. Computational Urban Science, 1(1), 8. https://doi.org/10.1007/s43762-021-00008-9 DOI
Bugayevskiy, S., Gerasymenko, V., Konyukhov, A., & Nikulin, V. (2017). Basics of modeling and technology of creating reinforced concrete elements of monofant system construction. MATEC Web of Conferences, 116, 02009. https://doi.org/10.1051/matecconf/201711602009 DOI
Cabinet of Ministers of Ukraine (2021). Nakaz № 366-r Pro Skhvalennia Natsionalnoi Stratehii iz Stvorennia Bezbariernoho Prostoru v Ukraini na Period do 2030 Roku [Order No. 366-r on Approval of the National Strategy for the Creation of a Barrier-Free Space in Ukraine for the Period Until 2030]. Cabinet of Ministers of Ukraine.
Cajamarca Dacto, K. E., Montero Riofrio, J. C., Nieto Páez, E. F., Tasan Cruz, D. M., & González Espinosa, M. J. (2025). Flexible modular dwelling for rural environments; specific case: Cebadas - Ecuador. F1000Research, 13, 845. https://doi.org/10.12688/f1000research.154417.2 DOI
Cherkes, B., Idak, Y., & Frankiv, R. (2023). The concept of "gated community" and its explication in the theory and practice of urban planning: A literature review. Architectural Studies, 9(2), 47-57. https://doi.org/10.56318/as/2.2023.47 DOI
Cherkes, B., Idak, Y., & Rakochyi, Y. (2024). Architectural and urban planning context of the physical dimension of urban identity. Architectural Studies, 10(2), 86-99. https://doi.org/10.56318/as/2.2024.86 DOI
City of Gothenburg (2025). Planning and construction projects. City of Gothenburg. Retrieved from https://goteborg.se/wps/portal/start/goteborg-vaxer/sa-planeras-staden/plan-och-byggprojekt
Derkach, S. (2024). Stala Modernizatsiia: Renovatsiia Panelnoi Zhytlovoi Zabudovy na Zasadakh Staloho Rozvytku [Sustainable modernisation: renovation of a panel residential building based on sustainable development principles]. Ukrainian Academy of Arts, 36, 14-24. https://doi.org/10.32782/2411-3034-2024-36-2 DOI
Dyomin, M., Ivashko, Y., Ivashko, O., Kuśnierz, K., & Kuzmenko, T. (2021). Development trends and problems of large Ukrainian historical cities in the twentieth and twenty-first century: Case study of urban tendencies and problems of revitalization of an industrial district. Wiadomości Konserwatorskie - Journal of Heritage Conservation, 2021(65), 26-36.
EC (2020). New Leipzig Charter - The transformative power of cities for the common good. Retrieved from https://ec.europa.eu/regional_policy/en/information/publications/brochures/2020/new-leipzigcharter-the-transformative-power-of-cities-for-the-common-good
EC (2025). Biodiversity strategy for 2030. European Commission. Retrieved from https://environment.ec.europa.eu/strategy/biodiversity-strategy-2030_en
EC (2025). EU Adaptation Strategy. European Commission. Retrieved from https://climate.ec.europa.eu/eu-action/adaptation-climate-change/eu-adaptation-strategy_en
EC (2025). Nature Restoration Regulation: Supporting the restoration of ecosystems for people, the climate and the planet. European Commission. Retrieved from https://environment.ec.europa.eu/topics/nature-and-biodiversity/nature-restoration-regulation_en
EP (2023). Report on the proposal for a regulation of the European Parliament and of the Council on nature restoration. COM(2022)0304. European Parliament. https://www.europarl.europa.eu/doceo/document/A-9-2023-0220_EN.html
Fayna Town (2025). Fayna Town. Retrieved from https://faynatown.com.ua/main?gclid=EAIaIQobChMI1YWt4KSN3wIVG4uyCh2qWwf3EAAYASAAEgK-DfD_BwE#first-slide
Giles-Corti, B., Moudon, A. V., Lowe, M., Adlakha, D., Cerin, E., Boeing, G., Higgs, C., Arundel, J., Liu, S., Hinckson, E., Salvo, D., Adams, M. A., Badland, H., Florindo, A. A., Gebel, K., Hunter, R. F., Mitáš, J., Oyeyemi, A. L., Puig-Ribera, A., Queralt, A., Santos, M. P., Schipperijn, J., Stevenson, M., Van Dyck, D., Vich, G., & Sallis, J. F. (2022). Creating healthy and sustainable cities: What gets measured, gets done. The Lancet Global Health, 10(6), 782-785. https://doi.org/10.1016/S2214-109X(22)00070-5 DOI
Gojaeva, E., Adilova, N., Chobanli, E., & Gutium, T. (2024). Green Economy as the Basis for Innovative Environmental Sustainable Development. In F.S., Mammadov, R.A., Aliev, J., Kacprzyk & W., Pedrycz (Eds.). International Conference on Smart Environment and Green Technologies - ICSEGT 2024 (pp.465-472). Cham: Springer. https://doi.org/10.1007/978-3-031-81567-6_54 DOI
Hatem, F. M. (2023). Making cities smarter for an inclusive green transition towards a long‐term sustainable development: A critical literature review. IET Smart Cities, 5(4), 243-253. https://doi.org/10.1049/smc2.12066 DOI
He, W., & Chen, M. (2024). Advancing urban life: a systematic review of emerging technologies and artificial intelligence in urban design and planning. Buildings, 14(3), 835. https://doi.org/10.3390/buildings14030835 DOI
Hendawy, M., Junaid, M., & Amin, A. (2024). Integrating sustainable development goals into architecture curriculum: Experiences and perspectives. City and Environment Interactions, 21, 100138. https://doi.org/10.1016/j.cacint.2023.100138 DOI
Hniloskurenko, M. V., Skoryk, L. P., & Skoryk, L. P. (2021). The leading importance of architectural conservation areas for the establishment of a modern system of interactive recreation in historical cities. Linguistics and Culture Review, 5(4), 1312-1324. https://doi.org/10.21744/lingcure.v5nS4.1783 DOI
Huseynova, A., Mazanova, O., Khudiyeva, P., Muradova, H., Leyla, H., & Kamala, N. (2022). Innovative Way of Solution of "Smart City" in Azerbaijan - City Problems. WSEAS Transactions on Business and Economics, 19, 1394-1402. https://doi.org/10.37394/23207.2022.19.125 DOI
Iskenderov, U., Khachaturian, O., Cruz, D. T., Oviedo, G., & Pavlovskyi, S. (2024). Improving thermal comfort and energy saving in buildings using advanced optimal configuration approaches for heating structures and panels. Architecture Image Studies, 5(2), 96-111. DOI
Jiang, F., Ma, J., Webster, C. J., Chiaradia, A. J., Zhou, Y., Zhao, Z., & Zhang, X. (2024). Generative urban design: A systematic review on problem formulation, design generation, and decision-making. Progress in Planning, 180, 100795. https://doi.org/10.1016/j.progress.2023.100795 DOI
Jin, A., Yang, Z., Zhu, D., Liang, Z., Wang, J., & Wang, Y. (2024). Study on the economic competitiveness of cities in Guangdong province based on factor analysis - Taking 21 prefecture-level cities in Guangdong Province as an example. Proceedings of the International Conference on Algorithms, Software Engineering, and Network Security, 192-196. https://doi.org/10.1145/3677182.3677216 DOI
Judijanto, L., Hindarto, D., Wahjono, S. I., & Djunarto. (2023). Edge of enterprise architecture in addressing cyber security threats and business risks. International Journal Software Engineering and Computer Science, 5(3), 386-396. https://doi.org/10.35870/ijsecs.v3i3.1816 DOI
Khavarian-Garmsir, A. R., Sharifi, A., & Sadeghi, A. (2023). The 15-minute city: Urban planning for sustainable neighborhoods. Cities, 132, 104101. https://doi.org/10.1016/j.cities.2022.104101 DOI
Knapik, M. (2025). Analysis of water leaks and savings strategies in commercial buildings and the impact of leed certification on water system operating cost. Scientific Reports of Fire University, 1(95), 41-58. https://doi.org/10.5604/01.3001.0055.2863 DOI
Law of Ukraine (1992). Zakon Ukrainy № 2780-XII Pro Osnovy Mistobuduvannia [Law of Ukraine No. 2780-XII on the Fundamentals of Urban Planning].
Law of Ukraine (2006). Zakon Ukrainy № 525-V Pro Kompleksnu Rekonstruktsiiu Kvartaliv (Mikroraioniv) Zastariloho Zhytlovoho Fondu [Law of Ukraine No. 525-V on Comprehensive Reconstruction of Quarters (Microdistricts) of Outdated Housing Stock].
Law of Ukraine (2011). Zakon Ukrainy № 3038-VI Pro Rehuliuvannia Mistobudivnoi Diialnosti [Law of Ukraine No. 3038-VI on Regulation of City Planning Activity].
Law of Ukraine (2022). Zakon Ukrainy № 2486-IX Pro Vnesennia Zmin do Deiakykh Zakonodavchykh Aktiv Ukrainy Shchodo Zabezpechennia Vymoh Tsyvilnoho Zakhystu Pid Chas Planuvannia ta Zabudovy Terytorii [Law of Ukraine No. 2486-IX on Amendments to Certain Legislative Acts of Ukraine Regarding Ensuring Civil Protection Requirements During Planning and Development of Territories].
Lialiuk, A., & Lialiuk, O. (2023). Osoblyvosti Formuvannia Budivelnykh ta Planuvalnykh Rishen dlia Orendnoho Zhytla dlia Molodykh Semei [Features of the formation of construction and planning solutions for rental housing for young families]. Organization, Administration and Economy in Construction, 35(2), 167-171. https://doi.org/10.31649/2311-1429-2023-2-167-171 DOI
Luo, C. (2015). Vrijburcht: Amsterdam, IJburg, Netherlands. Retrieved from https://architectureindevelopment.org/project/499
Mehr als Wohnen (2025). Mehr als Wohnen. Retrieved from https://www.mehralswohnen.ch/
Milošević, M. R., Milošević, D. M., Stanojević, A. D., Stević, D. M., & Simjanović, D. J. (2021). Sustainable management for architectural heritage in smart cities. Mathematics, 9(4), 304. https://doi.org/10.3390/math9040304 DOI
Ministry of Development of Communities, Territories and Infrastructure (2025). Barrier-free recovery - project. Ministry of Development of Communities, Territories and Infrastructure of Ukraine.
Ministry of Development of Communities, Territories and Infrastructure of Ukraine (2024). DBN V.2.2-5:2023 Zakhysni Sporudy Tsyvilnoho Zakhystu [DBN V.2.2-5:2023 "Civil defense protective structures"]. Ministry of Development of Communities, Territories and Infrastructure of Ukraine.
Ministry of Housing and Communal Services of Ukraine (2009). Nakaz № 21 Pro Zatverdzhennia SOU Zhytlovo-Komunalnoho Hospodarstva 75.11-35077234.NNNN:2009 Zhytlovi Budivli. Pravyla Vyznachennia Fizychnoho Znosu Zhytlovykh Budivel [Order No. 21 on Approval of the SOU Housing nd Utilities 75.11-35077234.NNNN:2009 Residential Buildings. Rules for Determining the Physical Wear and Tear of Residential Buildings]. Ministry of Housing and Communal Services of Ukraine.
Ministry of Regional Development, Construction and Housing and Communal Services of Ukraine (2023). DBN B.2.2-12:2019 Planuvannia ta Zabudova Terytorii [DBN B.2.2-12:2019 "Planning and development of territories"]. Ministry of Regional Development, Construction and Housing and Communal Services of Ukraine.
Moura, R., Noronha, F., dal Moro, G., & Umaraliev, R. (2012). Preliminary results of dispersive wave vs measurements in the granitic urban environment of Porto, Portugal. 12th International Multidisciplinary Scientific GeoConference and EXPO - Modern Management of Mine Producing, Geology and Environmental Protection. DOI
Naydenova, P., & Velev, P. (2012). Study of a dependence between atmospheric and artificial aging of polyvinyl chloride profiles for doors and windows. Journal of the University of Chemical Technology and Metallurgy, 47(5), 513-517. https://www.researchgate.net/publication/286818783_Study_of_a_dependence_between_atmospheric_and_artificial_aging_of_polyvinyl_chloride_profiles_for_doors_and_windows
Naydenova, P., & Velev, P. (2014). A study of the influence of the composition and the design of polyvinyl chloride profiles for doors and windows on energy efficiency. Journal of Chemical Technology and Metallurgy, 49(4), 356-362.
Orsetti, E., Tollin, N., Lehmann, M., Valderrama, V. A., & Morató, J. (2022). Building resilient cities: Climate change and health interlinkages in the planning of public spaces. International Journal of Environmental Research and Public Health, 19(3), 1355. https://doi.org/10.3390/ijerph19031355 DOI
Pichugin, S. F. (2018). Reliability estimation of industrial building structures. Magazine of Civil Engineering, 83(7), 24-37. https://doi.org/10.18720/MCE.83.3
Puchol-Salort, P., O'Keeffe, J., van Reeuwijk, M., & Mijic, A. (2021). An urban planning sustainability framework: Systems approach to blue green urban design. Sustainable Cities and Society, 66, 102677. https://doi.org/10.1016/j.scs.2020.102677 DOI
Puskás, N., Abunnasr, Y., & Naalbandian, S. (2021). Assessing deeper levels of participation in nature-based solutions in urban landscapes - A literature review of real-world cases. Landscape and Urban Planning, 210, 104065. https://doi.org/10.1016/j.landurbplan.2021.104065 DOI
Rane, N. L. (2023). Integrating leading-edge artificial intelligence (AI), internet of things (IOT), and big data technologies for smart and sustainable Architecture, Engineering and Construction (AEC) industry: challenges and future directions. International Journal of Data Science and Big Data Analytics, 3(2), 73-95. https://doi.org/10.51483/IJDSBDA.3.2.2023.73-95 DOI
Rosso, F., Cappa, F., Spitzmiller, R., & Ferrero, M. (2022). Pocket parks towards more sustainable cities. Architectural, environmental, managerial and legal considerations towards an integrated framework: A case study in the Mediterranean region. Environmental Challenges, 7, 100402. https://doi. org/10.1016/j.envc.2021.100402 DOI
Schults, R., Annenkov, A., Bilous, M., & Kovtun, V. (2016). Interpretation of geodetic observations of the high-rise buildings displacements. Geodesy and Cartography, 42(2), 39-46. https://doi.org/10.3846/20296991.2016.1198566 DOI
Shults, R., Seitkazina, G., Annenkov, A., Demianenko, R., Soltabayeva, S., Kozhayev, Z., & Orazbekova, G. (2025). Complex Geodetic Monitoring of the Massive Sports Structures by Terrestrial Laser Scanning. Civil Engineering Journal, 11(3), 884-909. https://doi.org/10.28991/CEJ-2025-011-03-05 DOI
Shymko, V., & Slipych, О. (2024). Vykorystannia Innovatsiinykh Rishen ta VR-Tekhnolohii v Arkhitekturno-Budivelnomu Proektuvanni ta Budivnytstvi [The use of innovative solutions and VR-technologies in architectural design and construction]. Mining Journal of Kryvyi Rih National University, 58(1), 110-114. https://doi.org/10.31721/2306-5435-2024-1-112-110-114 DOI
Smailov, N., Tolemanova, A., Aziskhan, A., Sekenov, B., & Sabibolda, A. (2025). Implementation of fiber-optic sensing systems in structural health monitoring of concrete. Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska, 15(3), 73-76. https://doi.org/10.35784/iapgos.7606 DOI
Talebian, S., Golkarieh, A., Eshraghi, S., Naseri, M., & Naseri, S. (2025). Artificial intelligence impacts on smart built environments. Advances in Civil Engineering and Environmental Science, 2(1), 45-56. https://doi.org/10.22034/acees.2025.488106.1013 DOI
Teixeira, J. F., Silva, C., Seisenberger, S., Büttner, B., McCormick, B., Papa, E., & Cao, M. (2024). Classifying 15-minute cities: A review of worldwide practices. Transportation Research Part A: Policy and Practice, 189, 104234. https://doi.org/10.1016/j.tra.2024.104234 DOI
Timchenko, R., Krishko, D., & Pavlishak, D. (2023). Konstruktyvni Rishennia Bahatosharovykh Lehkykh Ohorodzhen Pidvyshchenoi Zvukoizoliatsii [Design solutions of multilayer lightweight enclosures with increased sound insulation]. Mining Journal of Kryvyi Rih National University, 57(1), 114-120. DOI
Wu, P., Zhang, Z., Peng, X., & Wang, R. (2024). Deep learning solutions for smart city challenges. Scientific Reports, 14, 5176. https://doi.org/10.1038/s41598-024-55928-3 DOI
Xia, H., Liu, Z., Efremochkina, M., Liu, X., & Lin, C. (2022). Study on city digital twin technologies for sustainable smart city design: A review and bibliometric analysis of geographic information system and building information modelling integration. Sustainable Cities and Society, 84, 104009. https://doi.org/10.1016/j.scs.2022.104009 DOI
Zafar, S. (2024). Smart cities: The role of AI in urban planning and sustainable development. Journal of AI Range, 1(1), 27-39.
Zotsenko, N. L., & Vinnikov, Y. L. (2016). Long-Term Settlement of Buildings Erected on Driven Cast-InSitu Piles in Loess Soil. Soil Mechanics and Foundation Engineering, 53(3), 189-195. https://doi.org/10.1007/s11204-016-9384-6 DOI

Relation:

Europa XXI

Volume:

50

Detailed Resource Type:

Article

Format:

application/octet-stream

Resource Identifier:

oai:rcin.org.pl:262652 ; 1429-7132 (print) ; 2300-8547 (online) ; 10.7163/Eu21.2026.50.9

Source:

CBGiOŚ. IGiPZ PAN, call nos.: Cz.6406, Cz.6407 ; click here to follow the link

Language:

eng

Language of abstract:

eng

Rights:

Creative Commons Attribution BY 4.0 license

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Copyright-protected material. [CC BY 4.0] May be used within the scope specified in Creative Commons Attribution BY 4.0 license, full text available at: ; -

Digitizing institution:

Institute of Geography and Spatial Organization of the Polish Academy of Sciences

Original in:

Central Library of Geography and Environmental Protection. Institute of Geography and Spatial Organization PAS

Projects co-financed by:

European Union. European Regional Development Fund ; Programme Innovative Economy, 2010-2014, Priority Axis 2. R&D infrastructure

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Open

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May 19, 2026

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