Buildings with Open Plan Floors and Integrated Load-Bearing Structures

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Title: Buildings with Open Plan Floors and Integrated Load-Bearing Structures

Author(s): Viktor V. Granev, Nikolay G. Kelasiev, Emil N. Kodysh, Nikolay N. Trekin, and Ivan A. Terekhov

Publication: Symposium Paper

Volume: 326

Issue:

Appears on pages(s): 99.1-99.8

Keywords: steel frame, space-planning and structural concepts, buildings with free floor plan, construction unit, tube-reinforced concrete, cast-in-place and prefabricated floor slab

DOI: 10.14359/51711082

Date: 8/10/2018

Abstract:

The paper considers a structural concept for multistorey buildings with free floor plan and the new type of large-size load-bearing structures. The characteristic of the structural concept is that the main spatial reinforcing member for adjacent storeys in building is a steel truss.

Such approach makes it possible to organize large-span space through the floor and it can be used for different purposes, for example, for shopping area, ice or roller-skating rinks, open space offices.

The authors designed structural node connections including resting of floor slab on truss chords, as well as joining of steel truss to shotcrete filled rectangular tubes.

Parameters of the most cost-efficient cast-in-place floor slab by corrugated deck have been determined.

Related References:

1. Kodysh, E.N., Trekin, N.N., Kelasiev, N.G., Terekhov, I.A., and Soskov, A.A. Design of multi-level parking garages on the steel frame. Aksiom Graphics Union, Moscow, 2017, 176 pp.

2. Kodysh, E.N., Trekin, N.N., Terekhov, I.?., Eremeev, D.S., and Soskov, A.A. Improvement of space-planning and structural systems in large-span buildings through the example of parking garages on the steel frame. Academia. Architecture and Construction, 3, 2017, pp.103-107.

3. Trekin, N.N., Kodysh, E.N., Terekhov, I.?., and Stankevich, Yu.S. 2017. Structural concepts on the basis of steel reinforced concrete structures for multi-storey buildings with flexible structural system. Proceedings of the Conference of Students’ Research of the Institute of Construction and Architecture NRU MSUCE, pp. 713-715.

4. Kodysh, E.N., Trekin, N.N., and Nikitin I.?. Design of multi-storey buildings with reinforced concrete frame, ASV, ?oscow, 2009, pp. 343.

5. GOST 9561–91. Multihollow reinforced concrete floor slabs for buildings and edifices. Technical specifications.

6. GOST 21506–2013. Ribbed reinforced concrete floor slabs of 300 mm height for buildings and edifices. Technical specifications.

7. GOST 28042–2013. Reinforced concrete roof slabs for industrial buildings.

8. GOST 32499–2013. Multihollow reinforced concrete floor slabs for buildings with span up to 9 m of production line casting.

9. Kodysh, E.N., Trekin, N.N., Nikitin, I.?. and Sosedov K.?. Practical methods and examples to calculate reinforced concrete structures of heavy concrete according to design and construction specifications 63.13330. Publishing enterprise «Bumazhnik», Moscow, 2017, 501 pp.

10. Design and construction specifications 266.1325800.2016 «Reinforced concrete structures. Design regulations»

11. ?N 1994-1-1:2004 Eurocode 4: Design of composite steel and concrete structures -Part 1-1: General rules and rules for buildings.

12. ANSI/ASCE 9-91 Standard Practice for Construction and Inspection of Composite Slabs

13. STO 57398459-001–2010. Steel sheet bent profiles for steel-concrete floor slabs. Technical specifications.