Selection of the optimal structure of the bearing wall of a residential building in the form of a well brickwork for the climatic conditions of Tyumen
https://doi.org/10.31660/2782-232X-2021-3-30-39
Abstract
In the construction of buildings and structures, nonhomogeneous (according to heat engineering characteristics) filler structures are often used. In this article, the object of research is one of these structures, namely a well brickwork with wells filled with various materials. It is used as exterior walls for low-rise houses, utility buildings and other structures. Currently, there are many materials for both wall construction and thermal insulation. Consequently, it is important to choose the most optimal (energy-efficient) version of the well brickwork, which provides the heat saving in the internal space of the building during the cold period. To calculate and analyze the thermophysical properties of the well brickwork, the approximate method of K.F. Fokin was used. According to it, calculations of thermal engineering parameters with the purpose to determine the reduced resistance to heat passage were performed. The article presents the results of these calculations, analyzes of the thermophysical properties and, based on the data obtained, selects the optimal options for enclosing structures in the form of a well brickwork for the climatic conditions of the city of Tyumen.
About the Authors
L. I. NikitinaRussian Federation
Lyubov I. Nikitina, Candidate of Engineering, Associate Professor at the Department of Building Structures
Tyumen
I. L. Polyanskaya
Russian Federation
Irina L. Polyanskaya, Candidate of Engineering, Associate Professor at the Department of Building Structures
Tyumen
L. V. Belova
Russian Federation
Larisa V. Belova, Candidate of Engineering, Associate Professor at the Department of Engineering Sistems and Structures
Tyumen
References
1. Fokin, K. F. (2006). Stroitel'naya teplotekhnika ograzhdayushchikh chastey zdaniy. 5th edition, revised. Moscow, AVOK-PRESS Publ., 256 p. (In Russian).
2. Bogoslovskiy, V. N. (2006). Stroitel'naya teplofizika (teplofizicheskie osnovy otopleniya, ventilyatsii i konditsionirovaniya vozdukha). Saint Petersburg, AVOK Severo-Zapad Publ., 400 p. (In Russian).
3. Malyavina, E. G. (2007). Teplopoteri zdaniya. Moscow, AVOK-PRESS Publ., 144 p. (In Russian).
4. Shikhov, A. N. (2013). Teplotekhnicheskiy raschet ograzhdayushchikh konstruktsiy grazhdanskikh i promyshlennykh zdaniy. Perm, Izd-vo FGBOU VPO Permskaya GSKhA Publ., 74 p. (In Russian).
5. Tusnina, V. M., & Fayzov, D. Sh. (2017). To the issue of thermo-technical calculation of non-uniform enclosing structures of buildings. Industrial and civil engineering, (4), pp. 19-24. (In Russian).
6. Tusnina, O. A. (2013). Hermotechnical analysis of the structuresby using numerical methods. Bulletin of MGSU, (11), pp. 91-99. (In Russian).
7. Krivoshein, A. D., & Fedorov, S. V. (2010). K voprosu o raschete privedennogo soprotivleniya teploperedache ograzhdayushchikh konstruktsiy. Magazine of Civil Engineering, (8), pp. 21-27. (In Russian).
8. Sadykov, R. A., Kupriyanov, V. N. Kraynov, D. V., Safin, I. Sh., & Ivantsov, A. I. (2018). Raschet privedennogo soprotivleniya teploperedache naruzhnykh ograzhdeniy zdaniy. Kazan, Izd-vo Kazansk. gos. arkhitekt.stroit. un-ta Publ., 55 p. (In Russian).
9. Chto takoe kolodtsevaya kladka. Kamedom. (In Russian). Available at: https://kamedom.ru/kirpich/chto-takoe-kolodcevaya-kladka.html (date of the application: 08.09.2021).
10. Kolodtsevaya kladka: konstruktsiya oblegchennogo tipa i s uteplitelem. Iz kirpicha. Sayt o stroitel'stve. (In Russian). Available at: https://zhk-voskhod.rf/prochee/kolodtsevaya-kladka-konstruktsiyaoblegchennogo-tipa-i-s-uteplitelem.htm (date of the application: 08.09.2021).
Review
For citations:
Nikitina L.I., Polyanskaya I.L., Belova L.V. Selection of the optimal structure of the bearing wall of a residential building in the form of a well brickwork for the climatic conditions of Tyumen. Architecture, Construction, Transport. 2021;(3):30-39. (In Russ.) https://doi.org/10.31660/2782-232X-2021-3-30-39