Abstract and keywords
Abstract:
The appearance of residential and public buildings plays a vital role in modern urban architecture. Due to their high functionality, wide range of options, and reduced susceptibility to damage compared to other façade systems, architects often choose curtain wall ventilated facade systems. These systems offer a number of advantages, including architectural (the variety of materials used, the ability to combine them, and the flexibility of architectural and design solutions), technological (the speed of installation of façade structures and the ability to perform installation work year-round), and economic (the payback of curtain wall ventilated facade systems is achieved within 5 years due to reduced heating costs in winter and reduced energy consumption for air conditioning). The latest building materials used for cladding the load-bearing and enclosing structures of buildings impart a unique exterior style to both capital construction projects and renovations. The main distinguishing feature of these new façade systems is the combination of a beautiful exterior, high functionality, reliability, durability, and practicality. Cladding materials possess sufficiently high strength characteristics, allowing their use in various climatic zones and the combination of different material options within a single subsystem in curtain wall systems. This article analyzes the experience of using curtain wall ventilated facades with modern cladding materials, which can transform the appearance of residential or public buildings.

Keywords:
ventilated curtain wall, cladding materials, facade finishing, composite panels, facade subsystems
References

1. Panchuk N.N., Loginov S.S. Modern building materials, production technologies and their impact on the architectural appearance of buildings [Sovremennye stroitel'nye materialy, tekhnologii proizvodstva i ikh vliyanie na arkhitekturnyj oblik zdaniy]. Far East: Problems of Development of the Architectural and Construction Complex. 2014. No. 1. Pp. 156–159. EDN: https://elibrary.ru/TBREDF (rus)

2. Domozhilov V.Yu. Operational problems of curtain wall facade systems with air ventilated gap [Ekspluatatsionnye problemy sistem navesnykh fasadov zdaniy s vozdushnym ventiliruyemym zazorom]. BST: Bulletin of Construction Equipment. 2020. No. 3 (1027). Pp. 44–46. EDN: https://elibrary.ru/RZGVXV (rus)

3. Popova E.E., Gorodilova A.E., Kukolev M.I. Improving energy efficiency of houses using curtain ventilated facades [Povyshenie energoefektivnosti domov s pomoshch'yu navesnykh ventiliruyemykh fasadov]. Rostov Scientific Journal. 2017. No. 12. Pp. 367–378. EDN: https://elibrary.ru/YNWZIG (rus)

4. European Commission. Proposal for a Directive of the European Parliament and of the Council on the energy performance of buildings. 2021. [Internet resource: https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=celex:52021PC0802].

5. International Energy Agency. Global Energy Review. 2025. [Internet resource: https://www.iea.org/reports/global-energy-review-2025].

6. Bulletin of the Accounts Chamber of the Russian Federation. Energy efficiency of housing [Energoefektivnost' zhil'ya]. [Internet resource: https://ach.gov.ru/upload/iblock/39a/67v3esfn2b7d7 ubf7xcurijzieyytjvj.pdf]. (rus)

7. Manioğlu G., Yılmaz Z. Economic evaluation of the building envelope and operation period of heating system in terms of thermal comfort. Energy and Buildings. 2006. Vol. 38 (3). Pp. 266–272. DOI:https://doi.org/10.1016/j.enbuild.2005.06.009

8. Pacheco R., Ordóñez J., Martínez G. Energy efficient design of building: A review. Renewable and Sustainable Energy Reviews. 2012. Vol. 16 (6). Pp. 3559–3573. DOI:https://doi.org/10.1016/j.rser.2012.03.045

9. Denisova Yu.V. Selection of effective insulation in the design of curtain wall ventilated facades // Bulletin of the BSTU named after V.G. Shukhov. 2013. No. 4. P. 26–30. EDN: https://elibrary.ru/QCEJOJ

10. Motyaev M.A. ABC of curtain facades with air gap [Azbuka navesnykh fasadov s vozdushnym zazorom]. Moscow: Stroyizdat Publ., 2005. 104 p. (rus)

11. Grishin P.A. Optimization of technical solutions for curtain ventilated facades based on the use of insulation with improved moisture resistance characteristics [Optimizatsiya tekhnicheskikh reshenij ustrojstva navesnykh ventiliruyemykh fasadov na osnove ispol'zovaniya uteplitelya s povyshennymi kharakteristikami vlagojstojkosti]. International Journal of Applied Sciences and Technologies Integral. 2020. No. 5. Pp. 110–115. (rus)

12. Kopeika D.V. Thermal homogeneity of curtain ventilated facades and economic efficiency [Teplotekhnicheskaya odnorodnost' navesnykh ventiliruyemykh fasadov i ekonomicheskaya effektivnost']. Bulletin of the Donbas National Academy of Civil Engineering and Architecture. 2019. No. 1 (135). Pp. 107–112. EDN: https://elibrary.ru/XUOLXH (rus)

13. Description and advantages of the system. [Internet resource: https://www.vivesceramica.com/en/products/solutions/technical-solutions/ ventilated-facades.html].

14. What is a ventilated facade [Chto soboj predstavlyaet ventiliruyemyj fasad]. [Internet resource: http://ensave.eu/ru/services/ventilated-facade-systems/general-Information/]. (rus)

15. Gavrilenko A.A. Advantages and disadvantages of finishing residential buildings with curtain ventilated facades [Preimushchestva i nedostatki otdelki zhilykh zdaniy navesnymi ventiliruyemymi fasadami]. Technology and Organization of Construction Production. 2021. Pp. 341–346. EDN: https://elibrary.ru/GBOOUU (rus)

16. Facade system [Fasadnaya sistema]. [Internet resource: https://ru.wikipedia.org/wiki/]. (rus)

17. Ventilated facade. Types of subsystems [Ventiliruyemyj fasad. Vidy podsistem]. [Internet resource: https://fasady.pro/articles/ventiliruemyy-fasad-vidy-podsistem-2022-02-09?ysclid= miekfbghi 4381696006]. (rus)

18. Batalov S.K. Analysis of existing curtain ventilated facade systems and identification of facade design shortcomings [Analiz sushchestvuyushchikh sistem navesnykh ventiliruyemykh fasadov i vyyavlenie nedostatkov fasadnykh konstruktsij]. International Journal of Applied Sciences and Technologies Integral. 2020. No. 4. P. 29. EDN: https://elibrary.ru/AZDVCI (rus)

19. Frolov I.D., Chupaida A.M. Curtain ventilated facades in modern construction [Navesnye ventiliruyemye fasady v sovremennom stroitel'stve]. Young Scientist. 2019. No. 14 (252). Pp. 23–24. EDN: https://elibrary.ru/ICRWBI (rus)

20. Annenkova O.S., Besedin D.S. Methodology for selecting structural solutions for curtain ventilated facades [Metodika vybora konstruktivnogo resheniya navesnykh ventiliruyemykh fasadov]. Polzunov Almanac. 2020. No. 2-1. Pp. 19–23. EDN: https://elibrary.ru/NANLHR (rus)

21. Marinova E.I., Solovyev A.A. On the issue of selecting a rational option for the cladding layer of a ventilated facade [K voprosu o vybore ratsional'nogo varianta oblitsovochnogo sloya ventiliruemogo fasada]. Science in the Modern World: Research Results and Discoveries. Collection of scientific papers based on the materials of the XVIII International Scientific and Practical Conference. 2023. Pp. 152–159. EDN: https://elibrary.ru/PMZMGM (rus)

22. Popov D.V. Advantages and disadvantages of ventilated facades [Preimushchestva i nedostatki ventiliruyemykh fasadov]. Naukosfera. 2021. No. 8-1. Pp. 70–74. EDN: https://elibrary.ru/NXOZQZ (rus)

23. Markovets O.K., Katilevsky S.I. Features of using curtain ventilated facades in the reconstruction of buildings and structures in Russia [Osobennosti primeneniya navesnogo ventiliruemogo fasada pri rekonstruktsii zdaniy i sooruzheniy v Rossii]. Science. Engineering. Technologies (Polytechnic Bulletin). 2021. No. 1. Pp. 215–218. EDN: https://elibrary.ru/ONYBRY (rus)

24. Utkina O.A., Serdyuk S.A. Application of ventilated facades in building reconstruction [Primenenie ventiliruyemykh fasadov pri rekonstruktsii zdaniy]. Science. Engineering. Technologies (Polytechnic Bulletin). 2021. No. 1. Pp. 231–235. EDN: https://elibrary.ru/DHGINP (rus)

25. Konstantinova A.A., Peshkov V.V. Assessment of efficiency, quality and reliability of cladding material for curtain ventilated facade [Otsenka effektivnosti, kachestva i nadezhnosti oblitsovochnogo materiala dlya navesnogo ventiliruemogo fasada]. Proceedings of Higher Education Institutions. Investment. Construction. Real Estate. 2022. Vol. 12. No. 2 (41). Pp. 166–173. DOI:https://doi.org/10.21285/2227-2917-2022-2-166-173 EDN: https://elibrary.ru/LHPSCK (rus)

26. Galyamichev A.V. Curtain ventilated facade with cladding of thin ceramic panels with adhesive fixing to the frame [Navesnoj ventiliruyemyj fasad s oblitsovkoj iz tonkikh keramicheskikh panelej s kleevum krepleniem k karkasu]. Transparent Structures. 2017. No. 4 (114). Pp. 48–56. EDN: https://elibrary.ru/ZWCXWP (rus)

27. Naydenko A.V. Characteristics of building envelopes using curtain ventilated facades as an example [Kharakteristika ograzhdayushchikh konstruktsij na primere navesnykh ventiliruyemykh fasadov]. Science Alley. 2018. Vol. 4. No. 1 (17). Pp. 444–448. EDN: https://elibrary.ru/YQGNII (rus)

28. Ryzhikh V.D. Energy-efficient house [Energoefektivnyj dom]. International Scientific and Technical Conference of Young Scientists of BSTU named after V.G. Shukhov. Belgorod State Technological University named after V.G. Shukhov. 2016. Pp. 2975–2978. EDN: https://elibrary.ru/XEKLIN (rus)

29. Mendekeev R.A., Mambetaliev Z.N., Bolushev A.M., Bazarbekov I.B. Curtain ventilated facades – an innovative cladding technology in building construction [Navesnye ventiliruyemye fasady – innovatsionnaya tekhnologiya oblitsovki v stroitel'stve zdaniy]. Bulletin of the Kyrgyz University of Construction, Transport and Architecture named after N. Isanov. 2020. No. 1 (67). Pp. 115–125. DOI:https://doi.org/10.35803/1694-5298.2020.1.115-125 EDN: https://elibrary.ru/BIUYKB (rus)

30. Kravtsova A.A., Tseyko A.V. Innovative solutions in the application of curtain ventilated facades [Innovatsionnye resheniya pri primenenii navesnykh ventiliruyemykh fasadov]. International Journal of Applied Sciences and Technologies Integral. 2022. No. 4. Pp. 1101–1110. EDN: https://elibrary.ru/IJTUBD (rus)

31. Nazarov Kh.Kh. Search for a universal cladding material for curtain ventilated facade [Poisk universal'nogo oblitsovochnogo materiala dlya navesnogo ventiliruemogo fasada]. Bulletin of Science. 2021. Vol. 4. No. 3 (36). Pp. 117–121. EDN: https://elibrary.ru/HOGXRO (rus)

32. Ventilated façade systems. [Internet resource: https://www.hilti.co.uk/content/hilti/E1/GB/ en/business/engineering/ventilated-facade.html].

33. Nikiforova A.I., Saprykina T.K. Improvement of curtain facade systems [Sovershenstvovanie navesnykh fasadnykh sistem]. Current Issues of Modern Science: Theory, Methodology, Practice, Innovation. Collection of scientific articles based on the materials of the V International Scientific and Practical Conference. 2021. Pp. 47–51. EDN: https://elibrary.ru/GNVIQV (rus)

34. Bardakov V.K. Comparison of different types of cladding materials [Sravnenie razlichnykh tipov oblitsovochnykh materialov]. Generation of the Future: View of Young Scientists – 2021. Collection of scientific articles of the 10th International Youth Scientific Conference. 2021. Pp. 134–137. EDN: https://elibrary.ru/RWTTDE (rus)

35. Pavlushkina Yu.E., Pavlushkin M.E. Curtain ventilated facade and its characteristics [Navesnoj ventiliruyemyj fasad i ego kharakteristiki]. Young Scientist. 2016. No. 28 (132). Pp. 136–140. EDN: https://elibrary.ru/XEOJSV (rus)

36. Kerimov G.Kh., Alfimov A.V., Simonov A.A. Comparison of porcelain stoneware and metal cassettes as cladding material for curtain ventilated facade [Sravnenie keramogranita i metallokasset kak oblitsovochnogo materiala dlya navesnogo ventiliruemogo fasada]. BST: Bulletin of Construction Equipment. 2024. No. 3 (1075). Pp. 59–61. EDN: https://elibrary.ru/LMMYWP (rus)

37. Advantages and disadvantages of porcelain stoneware for facades [Preimushchestva i nedostatki keramogranita na fasad]. [Internet resource: https://blog.italonceramica.ru/ru/sovety-dlya-remonta/ keramogranit-dlya-fasada-plusi-i-minusi/?ysclid= mie8oiy8w874380651]. (rus)

38. Lozhkin V.E., Minakov Yu.A. Curtain ventilated facades – a progressive technological solution for reconstruction [Navesnye ventiliruyemye fasady – progressivnoe tekhnologicheskoe reshenie pri rekonstruktsii]. To Scientific Progress – Creativity of the Young. 2016. No. 4. Pp. 196–198. EDN: https://elibrary.ru/YGHBMT (rus)

39. Annenkova O.S., Besedin D.S. Review of main types of structural solutions for curtain ventilated facades [Obzor osnovnykh vidov konstruktivnykh reshenij navesnykh ventiliruyemykh fasadov]. Polzunov Almanac. 2019. No. 2-1. Pp. 31–36. EDN: https://elibrary.ru/TPWVHO (rus)

40. Kurkaeva E.V., Tokareva E.A. Application of curtain ventilated facades in building reconstruction and types of cladding materials [Primenenie navesnykh ventiliruyemykh fasadov pri rekonstruktsii zdaniy i vidy oblitsovochnykh materialov]. Science. Engineering. Technologies (Polytechnic Bulletin). 2021. No. 4. Pp. 110–112. EDN: https://elibrary.ru/VFRREF (rus)

41. Usova A.V., Boykova A.V. Ventilated facade as an energy-efficient building envelope [Ventiliruyemyj fasad, kak energoefektivnaya ograzhdayushchaya konstruktsiya]. Trends in the Development of Science and Education. 2020. No. 68-3. Pp. 68–71. DOI:https://doi.org/10.18411/lj-12-2020-113 EDN: https://elibrary.ru/ZHOQBT (rus)

42. Ventilated facades with natural clay terracotta [Ventiliruyemye fasady s natural'noj glinyanoj terrakotoj]. [Internet resource: https://ventilated-facade.com/catalog/Ventiliruemye-fasady-s-naturalnoj-glinyanoj-terrakotoj]. (rus)

43. Terracotta panel [Terrakotovaya panel']. [Internet resource: https://www.lopochina.ru/terracotta-panel.html]. (rus)

44. Mendekeev R.A., Mambetaliev Z.N., Bolushev A.M., Bazarbekov I.B. Curtain ventilated facades – an innovative cladding technology in building construction [Navesnye ventiliruyemye fasady – innovatsionnaya tekhnologiya oblitsovki v stroitel'stve zdaniy]. Bulletin of the Kyrgyz State University of Construction, Transport and Architecture named after N. Isanov. 2020. No. 1 (67). Pp. 115–125. DOI:https://doi.org/10.35803/1694-5298.2020.1.115-125 EDN: https://elibrary.ru/BIUYKB (rus)

45. Linear panels for ventilated facades [Linearnye paneli dlya ventfasada]. [Internet resource: https://ventfasady.ru/fasadnie-paneli/linearnie-paneli-dlya-ventfasada?ysclid=miggetobzg250568214]. (rus)


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