ARCHITECTURAL AND ENVIRONMENTAL DESIGN PRINCIPLES OF WATER ENTERTAINMENT AND HEALTH CENTERS IN HOT CLIMATE REGIONS
Abstract
This article explores the architectural formation and environmental design principles of water entertainment and health centers as multifunctional recreational complexes, with a particular focus on hot and arid climate regions. The relevance of the study is обусловлена the increasing demand for modern leisure infrastructure and the absence of unified regulatory and design approaches for aquatic facilities in developing countries, including Uzbekistan.
References
1. Baksheyeva, E. E. Arxitekturno-rekreasionnaya sreda akvaparkov zakritogo tipa / Baksheeva E. E. – SPb. : Peterburgskiy gos. universitet putey soobsheniya, 2010. – 21 s.
2. Proektirovanie basseynov. Spravochnoe posobie k SNiP. M., Stroy-izdat,1991.
3. Trutnev I.A. Opit stroitelstva lechebno-ozdorovitelnix basseynov v rekreasionnix zonax: Obzor. -SNTI po grajd. stroit, i arxit.,- M., 1981, vip.3, 49 s.
4. Khasanovich, I. N., & Sindarovich, U. A. Foreign Experience of Architecture of Water and Entertainment Health Institutions. JournalNX, 7(07), 212-217.
5. Юлдашева, М., Ибрагимов, Н., & Рахманова, М. (2018). Реконструкция и возрождение исторических зон города Самарканда в архитектурном проектировании САМГАСИ. Bulletin of LN Gumilyov Eurasian National University Technical Science and Technology Series, 123(2).
6. Рахманова, М., Юлдашева, М., & Ибрагимов, Н. (2018). Жилые дома террасного типа на сложном рельефе для районов Узбекистана. Bulletin of LN Gumilyov Eurasian National University Technical Science and Technology Series, 123(2).
7. Ибрагимов, Н. Х. (2022). История и факторы формирования архитектуры водно-развлекательных оздоровительных учреждений.
8. Газизов, Р. К., & Ибрагимов, Н. Х. (2014). Приближенные симметрии и решения уравнения Компанейца. Прикладная механика и техническая физика, 55(2), 38-42.
9. Khasanovich, I. N. (2023). DEVELOPMENT OF SPA (SANUS PER AQUAM) ZONES IN WATER FACILITIES. CENTRAL ASIAN JOURNAL OF ARTS AND DESIGN, 366-368.
10. Gazizov, R. K., & Ibragimov, N. K. (2014). Approximate symmetries and solutions of the Kompaneets equation. Journal of Applied Mechanics and Technical Physics, 55(2), 220-224.
11. Inatillayevich, G. O., & Pulatovich, M. B. Analysis of Underground Projects of Energy Efficient Low-Rise Residential Buildings Built on Highly Flooded Soilshttps. doi. org/10.31149/ijie. v4i9, 2156.
12. Salomovich, T. E., Samariddinovich, S. U., & Pulatovich, M. B. (2023). Improving the heat preservation properties of the exterior walls of brick buildings. International Journal of Culture and Modernity, 28, 15-20.
13. Turakulovna, E. M. U., & Pulatovich, M. B. (2024). Characteristics of Materials that Increase the Heat Resistance of Walls. Innovative: International Multidisciplinary Journal of Applied Technology (2995-486X), 2(2), 36-39.
14. Pulatovich, M. B., & Muzaffarovna, S. S. (2022). METHODS FOR INVESTIGATION OF THERMOPHYSICAL CHARACTERISTICS OF UNDERGROUND EXTERNAL BARRIER STRUCTURES OF BUILDINGS. ISSN 2181-3191 VOLUME 1, ISSUE 5 AUGUST 2022, 202259.
15. Salomovich, T. E., & Pulatovich, M. B. (2026). SOLVING A FINITE DIFFERENCE ONE-DIMENSIONAL PROBLEM USING THE PROGONKA METHOD BASED ON AN IMPLICIT SCHEME. IMRAS, 9(2), 24-30.




















