Thermal Performance of Facade Mounted Ventilated Systems with Pultruded Composite Profiles

Number of journal: 11-2025
Autors:

Konstantinov A.P.,
Aksenov I.S.,
Tomyshev М.А.,
Tatarnikov V.D.

DOI: https://doi.org/10.31659/0044-4472-2025-11-18-21
УДК: 699.86

 

AbstractAbout AuthorsReferences
The paper presents a calculated justification for the thermal performance of exterior building walls constructed using facade mounted ventilated systems made of pultruded composite profiles. The thermal conductivity of the composite material was determined using laboratory testing in accordance with standard methods. A series of numerical thermal calculations for a typical section of a building’s facade mounted ventilated systems made of composite materials yielded values for the specific heat loss through a point discontinuity in the form of composite brackets. These results were compared with those calculated for brackets made of metal alloys (galvanized steel, corrosion-resistant steel, and aluminum alloys). The thermal performance coefficient for exterior walls constructed using facade mounted ventilated systems made of pultruded composite materials was calculated. Prospective applications for these facade mounted ventilated systems were identified.
А.P. KONSTANTINOV, Candidate of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.),
I.S. AKSENOV, Candidate of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.),
М.А. TOMYSHEV, Student (This email address is being protected from spambots. You need JavaScript enabled to view it.),
V.D. TATARNIKOV, Student (v.tatarnikov@ ikbs-mgsu.ru)

National Research Moscow State University of Civil Engineering (26, Yaroslavskoe Highway, Moscow, 129337, Russian Federation)

1. Вахрушев К.Г., Симачков М.А. Модульные вентилируемые фасады для высотного строительства // Промышленное и гражданское строительство. 2022. № 10. С. 37–44. EDN: ­HTNGOS.
https://doi.org/10.33622/0869-7019.2022.10.37-44
1. Vahrushev K.G., Simachkov M.A. Modular ventilated facades for high-rise construction. Promyshlennoe i Grazhdanskoe Stroitel’stvo. 2022. No. 10, рр. 37–44. (In Russian). EDN: ­HTNGOS. https://doi.org/10.33622/0869-7019.2022.10.37-44
2. Гагарин В.Г., Гувернюк С.В. Проблемы определения динамических нагрузок на облицовочный слой навесных фасадных систем при ветровых порывах // Строительные материалы. 2018. № 6. С. 8–12. EDN: XSMBWP.
https://doi.org/10.31659/0585-430X-2018-760-6-8-12
2. Gagarin V.G., Guvernyuk S.V. Problems of dynamic load determination on a facing layer of hinged facade systems in wind runs. Stroitel’nye Materialy [Construction Materials]. 2018. No. 6, pp. 8–12.(In Russian). EDN: XSMBWP.
https://doi.org/10.31659/0585-430X-2018-760-6-8-12
3. Авдеев К.В., Левин Д.И., Левина Л.К. Расчет несущих элементов навесных фасадных систем при сейсмическом воздействии // Промышленное и гражданское строительство. 2025. № 5. С. 10–15. EDN: ­BGJTZK.
https://doi.org/10.33622/0869-7019.2025.05.10-15
3. Avdeev K.V., Levin D.I., Levina L.K. Calculation of bearing elements of hinged facade systems under seismic influence. Promyshlennoe i Grazhdanskoe Stroitel’stvo. 2025. No. 5, рр. 10–15. (In Russian). EDN: ­BGJTZK.
https://doi.org/10.33622/0869-7019.2025.05.10-15
4. Rusanov A.E., Baiburin A. Kh., Baiburin D.A., Bianco V. Heat loss from defects of hinged facade systems of buildings. Magazine of Civil Engineering. 2020. No. 95 (3), рр. 57–65. EDN: ­YJSIUW. https://doi.org/10.18720/MCE.95.6
5. Tusnina V.M., Emelianov D.A. The seismic stability of facade system with facing by composite panels. Magazine of Civil Engineering. 2018. No. 80 (4), рр. 62–72. EDN: ­XYLDSX. https://doi.org/10.18720/MCE.80.6
6. Gnedina L., Muchkina A., Labutin A. Installation of ventilated facades without scaffolding in high-rise buildings. E3S Web of Conferences. 2018, рр. 33–35. EDN: ­XYFIMX. https://doi.org/10.1051/e3sconf/20183303041
7. Елохов А.Е., Верховский А.А., Борисов В.А. Сравнение эффективности схем утепления в системах навесных вентилируемых фасадов // Academia. Архитектура и строительство. 2018. № 4. С. 116–122. EDN: ­YWTYRV
7. Elokhov A.E., Verkhovskiy A.A., Borisov V.A. Efficiency comparison of thermal insulation schemes in the hinged ventilated facades systems. Academia. Architectura i Stroitel’stvo. 2018. No. 4, рр. 116–122. (In Russian). EDN: ­YWTYRV
8. Шуршилин Е.А. Влияние отказа работы облицовочных панелей на теплотехнические свойства навесных вентилируемых фасадных конструкций // Строительство и техногенная безопасность. 2024. № 32 (84). C. 55–62. EDN: ­LDGNFF. https://doi.org/10.29039/2413-1873-2024-32-55-62
8. Shurshilin E.A. The impact of the failure of the cladding panels on the thermal properties of hinged ventilated facade structures. Stroitel’stvo I Tehnogennaya Bezopasnost’. 2024. No. 32 (84), pp. 55–62. (In Russian). EDN: ­LDGNFF.
https://doi.org/10.29039/2413-1873-2024-32-55-62

For citation: Konstantinov A.P., Aksenov I.S., Tomyshev М.А., Tatarnikov V.D. Thermal performance of facade mounted ventilated systems with pultruded composite profiles. Zhilishchnoe Stroitel'stvo [Housing Construction]. 2025. No. 11, pp. 18–21. (In Russian). https://doi.org/10.31659/0044-4472-2025-11-18-21


Print   Email