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ASPECTS OF RELIABILITY AND SAFETY ASSURANCE OF CONCRETE WORKS IN WINTER CONDITIONS

Abstract

The article analyses the topical question about the desired speed of concrete strength development assurance in winter conditions and the possibility of monolithic structures early loading in reliability and safety assurance. Having analyzed the experience of various methods of concrete temperature
maintaining the authors studied the process of concrete strength development at temperatures
different from normal. The multivariate
regression analysis and regression models were built based on the dependence of modified concrete compression strength on time and temperature of hardening. The article
provides the equations of multiple regression.

About the Authors

V. A. Dmitrienko
The Institute of service sector and entrepreneurship (branch) Don State Technical University
Russian Federation


I. N. Kokunko
The Institute of service sector and entrepreneurship (branch) Don State Technical University
Russian Federation


E. A. Dyuba
The Institute of service sector and entrepreneurship (branch) Don State Technical University
Russian Federation


A. K. Evsenkova
The Institute of service sector and entrepreneurship (branch) Don State Technical University
Russian Federation


References

1. Federal’nyy zakon № 384 ot 30.12.2009 "Tekhnicheskiy reglament o bezopasnosti zdaniy i sooruzheniy". [Federal law "Technical regulations on safety of buildings and structures] «Vserossiyskiy nauchnoissledovatel’skiy institut metrologicheskoy sluzhby», Federal’noe agenstvo po

2. tekhnicheskomu regulirovaniyu i metrologii, Elektron. Fond pravovoy i normativ.-tekhn. dokumentatsii, Konsortsium «Kodeks». [AllRussian research Institute of metrological

3. service, Federal Agency for technical regulation and metrology, Electron. Fund of legal and norm.-tech. documentation, Consortium "Kodeks".] Available at:

4. http://docs.cntd.ru/document/902192610

5. (accessed: 15.11.16) (in Russian).

6. Nesushchie i ograzhdayushchie konstruktsii: SNiP 3.03.01–87 [Bearing and enclosing structures: SNiP 3.03.01–87] Stroitel’nye normy i pravila RF. Available at: http: // sniprf.ru /

7. razdel–3/3–03–01–87 (accessed: 19.11.16) (in Russian).

8. Nagruzki i vozdeystviya: SNiP 2.01.07–85*. [Loads and impacts: SNiP 2.01.07–85*] Stroitel’nye normy i pravila RF. Available at: http: // sniprf.ru/razdel-2/03 (accessed: 19.11.16) (in Russian).

9. Betonnye i zhelezobetonnye konstruktsii: SNiP 2.03.01.-84*. [Concrete and reinforced concrete structures: SNiP 2.03.01.-84*] Stroitel’nye normy i pravila RF. Available at: http: // sniprf.ru/razdel-2/03 (accessed: 19.11.16) (in Russian).

10. Evdokimov V.A. Tekhnologiya stroitel’nogo proizvodstva v zimnikh usloviyakh: uchebnoe posobie dlya stroitel’nykh spetsial’nostey vuzov. [Technology of construction in winter

11. conditions: textbook for construction specialties of higher educational institutions.] Leningrad: Stroyizdat, 1984, 264 p. (in Russian).

12. Khayutin J.G. Monolitnyy beton.

13. Tekhnologiya proizvodstva rabot. [Mass

14. concrete. Job practices.] Moscow: Stroyizdat, 1991, 576 p. (in Russian).

15. Golovnev S.G. Tekhnologiya zimnego

16. betonirovaniya. Oprimizatsiya parametrov i vybor metodov. [Technology of cold weather concreting. Optimization of parameters and selection of methods.] Chelyabinsk: Izdatel’stvo YUYrGU, 1999, 156 p. (in Russian).

17. Vremennaya instruktsiya po proizvodstvu betonnykh rabot v zimnikh usloviyakh na ob’ektakh Glavyuzhuralstroya. [Interim

18. instructions for the cold weather concreting on Glavyuzhuralstroy objects.] Chelyabinsk: Glavyuzhuralstroy, 1985, 115 p. (in Russian).

19. Maslennikov S.A. Otsenka vliyaniya

20. temperatury na skorost’ nabora prochnosti

21. betonom. [Temperature effect assessment on concrete strength development rate.] Gornyy informatsionno-analiticheskiy byulleten’, 2010, no. 9, pp. 309-312. (in Russian).

22. Maslennikov S.A., Miroshnichenko K.N., Yakovleva K.S. K voprosu o regulirovanii deformatsionnykh svoystv betona [On regulation of concrete deformation properties.]

23. Nauchno-tekhnicheskie problemy stroitel’stva i tekhnosfernoy bezopasnosti: sb. nauch.trudov. [Scientific and technical problems of construction and technosphere safety: coll. ofsci. works] Shakhty, 2015, pp. 54-59. (in Russian).

24. Nikonorov S.V., Tarasova O.A

25. Tekhnologiya rannego nagruzheniya

26. monolitnykh plit perekrytiya pri ispol’zovanii balochno-stroechnoy opalubki. [Technology of monolithic slabs early loading using beamcolumn formwork.] Inzhenerno-stroitel’nyy

27. zhurnal, 2010, no. 4, pp. 17-20 (in Russian).

28. Akimova L.D. et al. ed. by Badina G.M., Meshchaninova A.V. Tekhnologiya

29. stroitel’nogo proizvodstva. [Construction

30. technology.] Leningrad: Stroyizdat, 1987, 606 p. (in Russian).

31. Sokolov G.K., Tekhnologiya stroitel’nogo proizvodstva. [Construction technology.] Moscow: Academy, 2007, 544 p. (in Russian).

32. Beletsky B.F. Tekhnologiya stroitel’nogo proizvodstva. [Construction technology.] Moscow: Izdatel’stvo ASV, 2001, 416 p. (in Russian).

33. Afanasev A.A. et al. ed. by Danilova N.N., Terenteva O.M. Tekhnologiya stroitel’nykh protsessov. [Technology of construction processes.] Moscow: Vysshaya shkola, 2001, 464 p. (in Russian).

34. Sborshchikova M.N. Grebenshchikov V.S. Mirovaya praktika stroitel’stva monolitnukh zdaniy. [The world practice of monolithic buildings construction.] Bylleten’ inostrannoy nauchno-tekhnicheskoy informatsii, 2007, no. 5,

35. pp. 30-33 (in Russian).

36. Zanina, I.A., Iliev A.G. Metodika

37. opredeleniya tselesoobraznosti ispol’zovaniya toplivno-energeticheskikh resursov pri ispol’zovanii energosberegayushchikh tekhnologiy. [Fuel and energy resources

38. practicability determining method using energyefficient technology.] Razvitie nauki i obrazovaniya v sovremennom mire:sb. nauch. tr. po materialam mezhdunar. nauch.-praktich. konf. [Science and education development in the modern world: Proceedings of international

39. sci.-pract. conf.] Moscow: ART-Konsalt, 2015, part III, pp. 31-36 (in Russian).

40. Chernyshenko O. V., Vozdeystvie

41. statsionarnykh i peredvizhnykh istochnikov na okruzhayushchuyu sredu. [Influence of stationary and mobile sources on the environment.] Kontsept. Available at: http: // ekoncept.ru / 2016 /96141.htm (acessed: 06.04.2016) (in Russian).

42. Pleshko M.S., Nasonov A.A., Pashkova O.V. Geometricheskie neodnorodnosti monolitnoy betonnoy krepi shakhtnykh stvolov i ikh vliyanie na ustoychivost’ vyrabotki. [Geometrical heterogeneity of the monolithic

43. concrete walling of mine shafts and its impact on working sustainability.] Gornyy zhurnal, 2015, no. 3, pp. 33-36 (in Russian).


Review

For citations:


Dmitrienko V.A., Kokunko I.N., Dyuba E.A., Evsenkova A.K. ASPECTS OF RELIABILITY AND SAFETY ASSURANCE OF CONCRETE WORKS IN WINTER CONDITIONS. Safety of Technogenic and Natural Systems. 2017;(1):37-51.

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