EVOLUTION OF NORMATIVE APPROACH TO ANALYSIS OF REINFORCED CONCRETE STRUCTURAL ELEMENTS

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Abstract

Strength analysis of cross-sections, stiffness and cracks width calculations, P-delta analysis of strucural members are reviewed within Russian Codes. Primary calculation tool of the modern Code is non-linear "deformation model". It is noted a saturation of normative approach by the empirical coefficients. Development of advanced models, decreasing a role of empirical component of reinforced concrete theory, is seemed to be one of the ways to Code improvement.

About the authors

D A SEMENOV

Peter the Great St. Petersburg Polytechnic University

Author for correspondence.
Email: spb.rcsoft@gmail.com

SEMENOV D.A., post-graduated student of «Building Mechanics and Structures» department, Peter the Great St. Petersburg Polytechnic University. He graduated from the same University in 2009. Scientific interests: reinforced concrete structural analysis, non-linear analysis, analytical models, bond, strength, stiffness, stability.

195251, г. Санкт-Петербург, ул. Политехническая, 29

References

  1. SP 63.13330.2012. Betonnye i zhelezobetonnye konstrukcii. Osnovnye polozhenija. Aktualizirovannaja redakcija SNiP 52-01–2003, Moskva, 2012.
  2. Semenov, D.A. (2015). Prochnost' zhelezobetonnyh jelementov pri kosom vnecentrennom szhatii. Vestnik Grazhdanskih Inzhenerov, 5(52). 76—84.
  3. Semenov, D.A. (2015). Vlijanie diagrammy betona "σ - ε" na rezul'taty rascheta normal'nogo sechenija zhelezobetonnogo jelementa po nelinejnoj deformacionnoj modeli. Beton i Zhelezobeton, No 3(594), 23–26.
  4. N-Z-46. Normy proektirovanija zhelezobetonnyh konstrukcij. Ministerstvo stroitel'stva predprijatij tjazheloj industrii, Moskva, 1946.
  5. NiTU 123-55. Normy i tehnicheskie uslovija proektirovanija betonnyh i zhelezobetonnyh konstrukcij, Moskva, 1955.
  6. SNiP II-B.1-62*. Betonnye i zhelezobetonnye konstrukcii. Normy proektirovanija, Gosstroj SSSR, Moskva: Izdatel'stvo literatury po stroitel'stvu, 1970.
  7. SNiP II-21–75. Betonnye i zhelezobetonnye konstrukcii, Moskva, 1976.
  8. SNiP 2.03.01–84*. Betonnye i zhelezobetonnye konstrukcii, Moskva, 1989.
  9. SP 52-101-2003. Betonnye i zhelezobetonnye konstrukcii bez predvaritel'nogo naprjazhenija armatury, Moskva, 2003, FGUP CPP.
  10. Posobie po proektirovaniju betonnyh i zhelezobetonnyh konstrukcij iz tjazhelogo betona bez predvaritel'nogo naprjazhenija armatury (k SP 52-101-2003), CNIIPromzdanij, NIIZhB, Moskva: OAO "CNIIPromzdanij", 2005.
  11. EN 1992-1-1:2004. Eurocode 2: Design of concrete structures. P. 1-1: General rules and rules for buildings, Brussels, 2004, Thomas Telford House.
  12. ACI 318M-08. Building Code Requirements for Structural Concrete and Commentary, MI, 2008. American Concrete Institute.
  13. ACI 318R-14. Building Code Requirements for Structural Concrete and Commentary, MI, 2014. American Concrete Institute.
  14. Karpenko, N.I., Karpenko, S.N. (2012). O diagrammnoj metodike rascheta deformacij sterzhnevyh jelementov. Beton i Zhelezobeton, No 6, 20—27.
  15. Karpenko, N.I., Muhamediev, T.A., Sapozhnikov, M.A. (1987). K postroeniju metodiki rascheta sterzhnevyh jelementov na osnove diagramm deformirovanija materialov. Sbornik NIIZhB "Sovershenstvovanie metodov rascheta staticheski neopredelimyh zhelezobetonnyh konstrukcij", Moskva, 5—23 (in Russian).
  16. Bajkov, V.N., Dodonov, M.I., Rastorguev, B.S. (1987). Obshhij sluchaj rascheta prochnosti jelementov po normal'nym sechenijam. Beton i Zhelezobeton, No 6, 16—18 (in Russian).

Copyright (c) 2017 SEMENOV D.A.

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