Complex Approach to Calculation and Design of Translucent Structures

Number of journal: №1-2-2019
Autors:

Konstantinov A.P.
Ibragimov A.M.

DOI: https://doi.org/10.31659/0044-4472-2019-1-2-14-17
УДК: 692.49

 

AbstractAbout AuthorsReferences
The analysis of the existing approach to calculation and design of the modern translucent structures, used when constructing civil buildings of various functional purposes, is presented in this work. The existing requirements of regulatory documents were analyzed. The review of the conducted scientific works devoted to the study of requirements for translucent structures as structural elements of the building, as well as different technical characteristics of translucent structures and methods of their calculation, was performed. It is established that the existing approach and the provisions of the existing regulations don’t take into account the entire complex of requirements for translucent structures, and for some performance characteristics of translucent structures, at that the necessary engineering methods of calculation are not available. The concept of a complex approach to the calculation and design of translucent structures is presented, as well as the directions of further research relating to the issue under consideration are outlined.
A.P. KONSTANTINOV, Candidate of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.)
A.M. IBRAGIMOV, Doctor of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.)

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

1. Plontikov A.A. Architectural and engineering principles and innovations in the construction of glass-facade buildings. Vestnik MGSU. 2015. No. 11, pp. 7–15. (In Russian).
2. Isaykin A., Boriskina I., Boriskina P. “Glass balconies” in architecture of multystoried residential buildings. Tekhnologii stroitel’stva. 2015. No. 6 (110), pp. 28–31. (In Russian).
3. Boriskina I.V. Zdaniya i sooruzheniya so svetoprozrachnymi fasadami i krovlyami. Teoreticheskie osnovy proektirovaniya svetoprozrachnyh konstrukcij [Buildings and Structures with Translucent Facades and Roofs. Theoretical Bases of Designing of Glass Constructions]. Saint-Petersburg: Lyubavich. 2012. 396 p.
4. Konstantinov А. and Mukhin А. Architectural possibilities of using PVC window units in historical buildings. MATEC Web of Conferences. Volume 193 (2018). International Scientific Conference Environmental Science for Construction Industry – ESCI 2018. Ho Chi Minh City, Vietnam, March 2–5, 2018.
5. Savin V.K., Savina N.V. Architecture and energy efficiency of a window. Stroitel’stvo i rekonstrukciya. 2015. No. 4 (60), pp. 124–130. (In Russian).
6. Umnyakova N.P., Butovsky I.N., Verkhovsky A.A., Chebotarev A.G. Requirements to heat protection of external enclosing structures of high-rise buildings. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2016. No. 12, pp. 7–11. (In Russian).
7. Shekhovtsov A.V. Air permeabillity of an PVC-window when exposed to freezing temperatures. Vestnik MGSU. 2011. No. 3–11, pp. 263–269. (In Russian).
8. Umnyakova N.P., Verkhovsky A.A. Assessment of air permeability of building envelopes. AVOK. 2013. No. 5, pp. 48–53. (In Russian).
9. Alekperov R.G., Potapova T.V. The issue of durability of translucent structures. Promyshlennoe i grazhdanskoe stroitel’stvo. 2017. No. 9, pp. 30–34. (In Russian).
10. Plotnikov A.A., Stratiy P. V Numerical-analytical method of calculating insulated double-glazed units deflection under climatic (internal) load. Vestnik MGSU. 2014. No. 12, pp. 70–76. (In Russian).
11. Galyamichev A.V. Wind load and its action on facade structures. Stroitel’stvo unikal’nyh zdanij i sooruzhenij. 2017. No. 9 (60), pp. 44–57. (In Russian).
12. Kalabin V.A. Assessment of PVC profile thermal deformation. Part 1. Winter transverse deformations. Svetoprozrachnye konstrukcii. 2013. No. 1–2, pp. 6–9. (In Russian).
13. Kalabin V.A. Assessment of PVC profile thermal deformation. Part 2. Summer transverse deformations. Svetoprozrachnye konstrukcii. 2013. No. 3, pp. 12–15. (In Russian).
14. Verkhovsky A.A., Zimin A.N., Potapov S.S. The applicability of modern translucent walling for the climatic regions of Russia. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2015. No. 6, pp. 16–19. (In Russian).
15. Konstantinov A.P. Calculation of PVC window blocks for wind load. Perspektivy nauki. 2018. No. 1 (100), pp. 26–30. (In Russian).
16. Кonstantinov А., Ratnayake L. Calculation of PVC windows for wind loads in high-rise buildings. MATEC Web of Conferences. Volume 193 (2018). International Scientific Conference Environmental Science for Construction Industry – ESCI 2018. Ho Chi Minh City, Vietnam, March 2–5, 2018.

For citation: Konstantinov A.P., Ibragimov A.M. Complex approach to calculation and design of translucent structures. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2019. No. 12, pp. 14–17. DOI: https://doi.org/10.31659/0044-4472-2019-1-2-14-17 (In Russian).


Print   Email