Ivanovo, Ivanovo, Russian Federation
Ivanovo, Ivanovo, Russian Federation
Ivanovo, Ivanovo, Russian Federation
691.335
The paper considers the issues of increasing the fire resistance of reinforced concrete building structures of industrial enterprises. The authors provide data on fires at industrial enterprises and infrastructure facilities and analyse the damage caused. The paper offers the author's method of increasing the fire resistance of structures by applying protective coatings to their surface. The authors have performed numerical experiments for unsteady heat transfer in an indoor fire using the ELCUT 6.6 software tool. Modelling of the floor slab heating process proves the effectiveness of the fire protection coating, with a fourfold increase in the fire resistance of the structure.
building structures, protective coating, fires, modelling of the heating process, fire resistance improvement
1. Fires and fire safety in 2023: information and analytical proceedings (2024), Balashikha: FGBU VNIIPO MES of Russia, 110 p. (In Russian).
2. Major fires at industrial enterprises in Russia in 2023-2024: official site RIA Novosti - Moscow (2024), available at: https://ria.ru/20240124/pozhar-1923122923.html (accessed on 17.11.2024) (in Russian).
3. Roitman, V.M. (2001), Inzhenernye resheniya po otsenke ognestoikosti proektiruemykh i rekonstruiruemykh zdanij [Engineering solutions for fire resistance assessment of designed and reconstructed buildings], Association ‘Pojnauka’, Moscow, Russia (in Russian).
4. Code of rules SP 118.13330.2022 (2022). ‘SNiP 31-06-2009 Public buildings and structures’, Order of the Ministry of Emergency Situations of Russia from 12 March 2020 N 151 “On approval of the set of rules SP 2.13130” Fire protection systems. Ensuring fire resistance of defence objects’, Moscow, Russia (in Russian).
5. Nekrasov, K.D. (1969), Zharostoikiy beton na portlandtsemente [Heat-resistant concrete on Portland cement], Stroyizdat, Moscow, UdSSR (in Russian).
6. Code of Regulations SP 468.1325800.2019 (2019). ‘Concrete and reinforced concrete structures. Rules for ensuring fire resistance and fire protection’, Moscow, Russia (in Russian).
7. Manual on calculation of fire resistance and fire safety of reinforced concrete structures made of heavy concrete (to STO 36554501-006-2006) (2008), NIIZhB, Moscow, Russia (in Russian).
8. Ovchinnikov, A.A. (2003), Development of heat-resistant concrete compositions on liquid glass with superplasticiser: Abstract of diss. cand. tech. sc., Ivanovo State University of Architecture and Civil Engineering, Ivanovo, Russia.
9. Rudobashta, S.P. (2021), "Mathematical modeling of electromagnetic heating processes of building materials", Umnye kompozity v stroitel'stve [Smart Composite in Construction], vol. 2, no. 3, pp. 46-56, available at: https://comincon.ru/en/nauka/issue/5039/view (accessed 12.01.2025) (in Russian).
10. Lazarev, A.A., Fedotov, I.Yu. and Andreev, R.N. (2023), “Modelling of the high-temperature effects of fire on glazing of building embrasures using a moving heat source” // Umnye kompozity v stroitel'stve [Smart Composite in Construction], vol. 4, no. 3, pp. 8-17, available at: https://comincon.ru/en/nauka/issue/5047/view (accessed 10.01.2025) (in Russian).