INTEGRATION OF LANDSCAPE ARCHITECTURE PRINCIPLES INTO THE GREENING AND PLANNING OF URBAN GARDEN-PARK TERRITORIES
DOI:
https://doi.org/10.32782/2415-8151.2025.38.2.30Keywords:
landscape architecture, urban greening, green infrastructure, garden and park planning, urban space, spatial modeling, aesthetic harmony, biodiversity, recreational environment, green plantings, spatial planningAbstract
Purpose. The purpose of the study is to substantiate and practically implement the integration of landscape architecture principles into the process of greening and planning garden and park areas of the urban environment, taking into account ecological, aesthetic, and socio-recreational requirements. The main focus is on the formation of sustainable spatial structures capable of improving the quality of the urban environment and the level of comfort for its residents. Methodology. The research employed methods of spatial analysis, field surveys, morphological analysis of plant communities, and visual-graphic modeling in the Figma environment to create conceptual design proposals. The theoretical basis consists of scientific works by Ukrainian and foreign authors devoted to the development of green infrastructure, principles of sustainable urban greening, and ecological-architectural planning. Results. As a result of the study, a concept for the spatial organization of the green area was developed using the example of Poltava State Agrarian University. Projects of multi-tiered plantings using ornamental shrubs and herbaceous plants were proposed and implemented, ensuring compositional harmony and ecosystem stability. During the reconstruction of the territory, the principles of ecological feasibility, landscape harmony, and functional interaction of different spatial elements were prioritized. The implementation of the projects made it possible to create a space that simultaneously performs recreational, sanitary-hygienic, and aesthetic functions. The use of plant species resistant to climatic conditions increased the adaptability of plantings and reduced the maintenance needs of the designed areas. The evaluation of the implemented solutions demonstrated a significant improvement in environmental quality. Thus, the developed concept confirmed the effectiveness of integrating ecological and design approaches into the spatial planning of green areas, which can serve as a model for the further development of similar objects. Scientific novelty. The sequence of applying landscape architecture principles in the greening process of urban areas has been substantiated, combining visual-compositional and ecological analysis. Practical relevance. As a result of the research, methodological principles were proposed for effectively combining architectural and design solutions with an emphasis on preserving natural ecosystems, which is an essential condition for the formation of sustainable urban systems.
References
Бондаренко О.І. Особливості формування системи зелених насаджень сучасного великого міста на прикладі м. Дніпро. Український журнал будівництва та архітектури. 2025. № 4 (028). С. 33–45. DOI: https://doi.org/10.30838/UJCEA.2312.270425.33.1175.
Будякова О.Ю. Смартміста в контексті зеленого та цифрового переходу. Наукові перспективи. 2025. № 1 (55). С. 643–660. DOI: https://doi.org/10.52058/2708-7530-2025-1(55)-643-660.
Зібцева О.В. Озеленення забудованих територій малих міст у контексті дотримання державних будівельних норм. Scientific Bulletin of UNFU. 2018. Т. 28, № 10. С. 28–31. DOI: https://doi.org/10.15421/40281005.
Радомська М.М. Підтримка екосистемних послуг міських зелених зон збільшенням біорізноманіття. Scientific Bulletin of UNFU. 2022. Vol. 32, No. 5. Р. 50–56. DOI: https://doi.org/10.36930/40320507
Рубан Л. Адаптивна модель «блакитно- зеленої» інфраструктури міста. Сучасні проблеми архітектури та містобудування. 2018. № 52. С. 230–237. URL: https://repositary.knuba.edu.ua/items/bc796d54-624d-46e9-98be-8520f4b8a56b
Рубан Л., Древаль І. Наукові підходи щодо організації «блакитно-зеленої» інфраструктури міста в умовах зміни клімату. Містобудування та територіальне планування. 2023. № 84. С. 309–321. DOI: https://doi.org/10.32347/2076-815x.2023.84.309-321.
Руденко Ю., Приварникова І. Стандарти озеленення урбанізованих територій, впроваджені в країнах ЄС та в Україні. У кн.: Зелені рішення як пріоритет корпоративної соціальної відповідальності: матеріали круглого столу (м. Дніпро, 16 трав. 2023 р.) / уклад.: І. Ю. Приварникова, О. А. Зінченко. Дніпро : ДНУ, 2023. С. 153–157. DOI: https://doi.org/10.15421/conf.2023.01
Черчик Л. Облік об’єктів зеленої інфраструктури урбоекосистем: методологічні та прикладні аспекти. Економічний часопис Волинського національного університету імені Лесі Українки. 2024. № 37. С. 38–47. URL: https://echas.vnu.edu.ua/index.php/echas/en/article/view/883/723 (дата звернення: 03.11.2025)
Havrylenko O.P., Shyshchenko P.H., Tsyhanok Y.Yu. The green infrastructure within the framework of a compact city concept (by example of Kyiv). Journal of Geology, Geography and Geoecology. 2021. Vol. 30, No. 2. P. 275–288. DOI: https://doi.org/10.15421/112124.
Kadić A., Maljković B., Rogulj K., Pamuković J. K. Green infrastructure’s role in climate change adaptation. Sustainability. 2025. Vol. 17, No. 9. P. 4178. DOI: https://doi.org/10.3390/su17094178.
Kumareswaran K., Jayasinghe G.Y. Urban green infrastructure for climate resilience. Cham: Springer, 2024. 400 p. DOI: 10.1007/978-3-031-37081-6.
Miroshnyk N.V. Green infrastructure, urbanization and ecosystem services – relationships in a megalopolis. Фактори експериментальної еволюції організмів. 2023. Vol. 33, No. 1. P. 135–140. DOI: https://doi.org/10.7124/FEEO.v33.1581.
Moskalchuk N., Orfanova M. Greening of territories in the system of planning and improvement of the city of Ivano-Frankivsk. Ecological Safety and Balanced Use of Resources. 2024. Vol. 15, No. 1. P. 75–86. DOI: https://doi.org/10.69628/esbur/1.2024.75.
Myalkovsky R., Plahtiy D., Bezvikonnyi P., Horodyska O., Nebaba K. Urban parks as an important component of environmental infrastructure: biodiversity conservation and recreational opportunities. Ukrainian Journal of Forest and Wood Science. 2023. Vol. 14, No. 4. P. 57–72. DOI: https://doi.org/10.31548/forest/4.2023.57.
McPhearson T., Kabisch N., Frantzeskaki N. Nature-based solutions for resilient cities. Stockholm: Stockholm University, 2024. 408 p. DOI: https://doi.org/10.4337/9781800376762.
Nazarian N., Pitman A. J., Lipson M. J. et al. Strengthening national capability in urban climate science: an Australian perspective. arXiv pre-print. 2025. URL: https://arxiv.org/abs/2509.03968 (дата звернення: 30.10.2025). DOI: https://doi.org/10.48550/arXiv.2509.03968.
Norton B., Bosomworth K., Coutts A., Williams N., Livesley S., Trundle A., Harris R., McEvoy D. Planning for a cooler future: green infrastructure to reduce urban heat. Victoria: Clearwater, 2013. 29 p. DOI: https://doi.org/10.13140/2.1.2430.1764.
Ramyar R. Adapting cities for climate change through urban green infrastructure. Land Use Policy. 2021. Vol. 105. Art. 105116. DOI: https://doi.org/10.1016/j.cities.2021.103316.
Salata K., Yiannakou A. Green infrastructure and climate change adaptation. Journal of Land Use Mobility and Environment. 2016. No. 1. P. 7–24. DOI: https://doi.org/10.6092/1970-9870/3723.
Shcherba V., Pylypovych O. Role of green- blue infrastructure in the formation of an eco-oriented city. Environmental Problems. 2024. Vol. 9, No. 4. P. 241–248. DOI: https://doi.org/10.23939/ep2024.04.241.











