The constructive solution for coupling a large-span steel coating with a bearing system made of monolithic reinforced concrete of the “Atomic energy” pavilion of JSC “VDNH”
https://doi.org/10.37538/0005-9889-2023-1(615)-5-13
Abstract
Introduction. The increasing use of a variety of modern architectural forms of public buildings of mass use entails the search for appropriate design solutions that should ensure safety, serviceability, as well as the durability of load-bearing structural systems and their elements.
Aim. Using the example of the designed and already under construction exhibition pavilion “Atomic Energy” on the territory of JSC “VDNH”, one of the possible solutions for the coupling of large-span roof system with a structural system of monolithic reinforced concrete is shown.
This coupling option includes the supporting parts of the steel cantilever trusses of the roof embedded in monolithic pylons and bracing members. The calculations and detailing carried out showed that the new coupling solution meets the requirements of the current standards for load-bearing capacity, rigidity and crack resistance.
Materials and methods. By means of numerical modeling using various computational complexes, analysis of experimental data of full-scale models and their comparison with modeling data, the initial data for the construction of the main load-bearing structures were obtained.
Results. As a result of the applied integrated approach, the initial data for the construction of the main loadbearing structures with atypical cross-sectional parameters were obtained and verified.
Conclusions. During the design of the load-bearing frame, the system of coupling of large-span steel trusses of the cantilever type with monolithic reinforced concrete structures of the “Atomic Energy” pavilion on the territory of JSC “VDNH” was improved.
About the Authors
M. M. KozelkovRussian Federation
Michael M. Kozelkov, Cand. Sci. (Engineering), Head of the Center No. 22 of NIIZHB named after A.A. Gvozdev, JSC Research Center of Construction, Moscow
e-mail: centr22@mail.ru
tel.: 8 (910) 444-70-75
A. V. Lugovoy
Russian Federation
Anton V. Lugovoy, Engineer, Chief Designer of the Center No. 22 of NIIZHB named after A.A. Gvozdev, JSC Research Center of Construction, Moscow
e-mail: centr22@mail.ru
tel.: 8 (910) 477-36-26
R. Sh. Sharipov
Russian Federation
Ravil Sh. Sharipov, Cand. Sci. (Engineering), Deputy Director for Research and Production Activities of NIIZHB named after A.A. Gvozdev, JSC Research Center of Construction, Moscow
e-mail: 1747724@mail.ru
tel.: 8 (499) 174-77-24
References
1. Raschetno-poyasnitel’naya zapiska po ob"ektu: «Pavil’on «Atomnaya ehnergiya» na territorii AO «VDNKH», raspolozhennyj po adresu: g. Moskva, ul. Prospekt Mira, vl. 119, str. 19, obshchej ploshchad’yu 20 000 kv. m. v predelakh zemel’nogo uchastka s kadastrovym nomerom 77:02:0018011:8467».
2. Federal’nyj zakon ot 29 dekabrya 2004 g. No. 190-FZ «Gradostroitel’nyj kodeks Rossijskoj Federacii».
3. Federal’nyj zakon Rossijskoj Federacii ot 30 dekabrya 2009 g. No. 384-FZ «Tekhnicheskij reglament o bezopasnosti zdanij i sooruzhenij».
4. Federal’nyj zakon ot 22.07.2008 g. No. 123-FZ «Tekhnicheskij reglament o trebovaniyakh pozharnoj bezopasnostI».
5. Federal’nyj zakon ot 30.03.1999 g. No. 52-FZ «O sanitarno-ehpidemiologicheskom blagopoluchii naseleniya s izmeneniyami na 25 iyunya 2012 goda (dejstvuyushchej redakcii).
6. Postanovlenie pravitel’stva RF ot 16 fevralya 2008 g. No. 87 «O sostave razdelov proektnoj dokumentacii i trebovaniyakh k ikh soderzhaniyu».
7. Postanovlenie pravitel’stva RF ot 26 dekabrya 2014 g. No. 1521 «Ob utverzhdenii perechnya nacional’nykh standartov i svodov pravil (chastej takikh standartov i svodov pravil), v rezul’tate primeneniya kotorykh na obyazatel’noj osnove obespechivaetsya soblyudenie trebovanij federal’nogo zakona «Tekhnicheskij reglament o bezopasnosti zdanij i sooruzheniJ» (v redakcii, aktual’noj s 17 dekabrya 2016 g., s izmeneniyami i dopolneniyami, vnesennymi v tekst, soglasno postanovleniyam pravitel’stva RF: ot 29.09.2015 g. No. 1033, ot 07.12.2016 g. No. 1307).
8. Rasporyazhenie pravitel’stva RF ot 21.06.2010 g. No. 1047-r «O perechne nacional’nykh standartov i svodov pravil (chastej takikh standartov i svodov pravil), v rezul’tate primeneniya kotorykh na obyazatel’noj osnove obespechivaetsya soblyudenie trebovanij federal’nogo zakona «Tekhnicheskij reglament o bezopasnosti zdanij i sooruzhenij».
9. SP 20.13330.2016. Loads and actions. Moscow: Standartinform; 2017 (in Russian).
10. SP 14.13330.2014. Seismic Building Design Code. Moscow: Ministry of Construction; 2014 (in Russian).
11. SP 63.13330.2012. Concrete and won concrete construction. Design requirements. Updated edition SNiP 52-01-2003. Moscow: Ministry of Construction; 2013 (in Russian).
12. SP 16.13330.2011. Steel structures. Updated edition SNiP II-23-81*. Moscow: Minregion Rossii; 2011 (in Russian).
13. SP 22.13330.2016. Soil bases of buildings and structures. Updated edition SNiP 2.02.01-83*. Moscow: Ministry of Construction; 2017 (in Russian).
14. SP 468.1325800.2019. Concrete and reinforced concrete structures. Rules for ensuring of fire resistance and fire safety. Moscow: Standartinform; 2020 (in Russian).
15. State Standart 27751-2014. Reliability for constructions and foundations. General principles. Moscow: Standartinform; 2015 (in Russian).
16. State Standart 7473-2010. Fresh concrete. Specifications. Moscow: Standartinform; 2012 (in Russian).
17. State Standart 10060-2012. Concretes. Methods for determination of frost-resistance. Moscow: Standartinform; 2014 (in Russian).
18. State Standart 10180-2012. Concretes. Methods for strength determination using reference specimens. Moscow: Standartinform; 2013 (in Russian).
19. State Standart 10181-2014. Concrete mixtures. Methods of testing. Moscow: Standartinform; 2015 (in Russian).
20. State Standart 14098-2014. Welded joints of reinforcement and inserts for reinforced concrete structures. Types, constructions and dimensions. Moscow: Standartinform; 2015 (in Russian).
21. State Standart 10922-2012. Welded reinforcing products and inserts, welded, lap and mechanical joints for reinforced concrete structures. General specifications. Moscow: Standartinform; 2013 (in Russian).
22. State Standart 12730.0-78. Concretes. General requirements for methods of determination of density, moisture content, water absorptions porosity and watertightness. Moscow: Standartinform; 1980 (in Russian).
Review
For citations:
Kozelkov M.M., Lugovoy A.V., Sharipov R.Sh. The constructive solution for coupling a large-span steel coating with a bearing system made of monolithic reinforced concrete of the “Atomic energy” pavilion of JSC “VDNH”. Concrete and Reinforced Concrete. 2023;615(1):5-13. (In Russ.) https://doi.org/10.37538/0005-9889-2023-1(615)-5-13