Have a personal or library account? Click to login
Reconstruction of the Bridge Over the Hron River in Village Hronovce Cover

Reconstruction of the Bridge Over the Hron River in Village Hronovce

Open Access
|Dec 2023

References

  1. MORAVČÍK, M. - BUJŇÁKOVÁ, P. - BAHLEDA, F.: Failure and damage of a first-generation precast prestressed bridge in Slovakia. Struct. Concrete. 2020, 21, pp. 2 353–2 362, doi:10.1002/suco.201900526.
  2. MORAVČÍK, M. - BUJŇÁKOVÁ, P. - KRALOVANEC, J.: Condition Assessment of a First Generation Precast Prestressed Bridges in Slovakia. In: Proceedings of the 1st Conference of the European Association on Quality Control of Bridges and Structures. EUROSTRUCT 2021: https://link.springer.com/conference/eurostruct, pp 108–115.
  3. CALVI, G. M. at all: Numerical Investigations on the Collapse of the Morandi Bridge. In book: Developments in International Bridge Engineering. Selected Papers from Istanbul Bridge Conference 2018.
  4. LIMA, K. at all: Rehabilitation of a 100-year-old steel truss bridge. Proceedings, Annual Conference - Canadian Society for Civil Engineering, 4, 2008, pp. 2408–2418.
  5. KÄÄRIÄINEN, J. - PULKKINEN, P.: Rehabilitation of Tornionjoki Steel Truss Bridge, Finland. Structural Engineering International, 12(4), 2002, pp. 273–275.
  6. SIWOWSKI, T.: The rehabilitation of long span truss bridge. Long Span Bridges and Roofs- Development, Design and Implementation, 2013, pp. 1–8.
  7. GHEITASI, A. - MICHELS, J. - LUO, S.: Rehabilitation and Retrofit Design of a Historic Steel Truss Bridge in Virginia. International Bridge Conference, IBC 22-5, 2022.
  8. HEYDARINOURI, H. at all: Strengthening of Steel Connections in a 92-Year-Old Railway Bridge Using Prestressed CFRP Rods: Multiaxial Fatigue Design Criterion. Journal of Bridge Engineering, 2021, 26(6).
  9. AGOCS, Z at all: Assessment and Refurbishment of Steel Structures. London: Spoon Press, (Francis&Taylor) 2005, 359 p.
  10. STN EN 1991–2. Eurocode 1: Actions on Structures - Part 2: Traffic Loads on Bridges: UNMS, Bratislava, SK, 2006 (including National annex).
  11. STN EN 1992–2. Eurocode 2: Design of Concrete Structures- Part 2: Concrete Bridges- Design and Detailing Rules: UNMS, Bratislava, SK, 2012.
  12. STN EN 1994 – 1 – 1: Eurocode 4: Design of composite steel and concrete structures. Part 1-1: General rules and rules for buildings. UNMS SR, Bratislava, SK, 2008.
  13. STN EN 1994 – 2: Eurocode 4: Design of composite steel and concrete structures. Part 2: General rules and rules for bridges. UNMS SR, Bratislava, SK, 2006.
  14. STN EN 1993 – 2: Eurocode 3. Design of steel structures: Part 2: Steel bridges. UNMS SR, Bratislava, SK, 2007.
  15. Technical Condition 104: Load-carrying capacity of bridges and footpaths. Slovak Road Administration, Bratislava, SK 2016.
  16. VIČAN, J. at all: Existing steel railway bridges evaluation. In: Civil and environmental engineering, scientific technical journal. ISSN 1336-5835. Vol. 12, no. 2 (2016), pp. 103-110.
  17. ODROBIŇÁK, J.: On the more reliable design of composite steel and concrete girders. In: TRANSCOM 2005: 6-th European Conference of Young Research and Science Workers in Transport and Telecommunications: Žilina, 27-29 June 2005: proceedings. Žilina: University of Žilina, 2005. ISBN 80-8070-420-1. pp. 111-116.
DOI: https://doi.org/10.2478/cee-2023-0066 | Journal eISSN: 2199-6512 | Journal ISSN: 1336-5835
Language: English
Page range: 730 - 737
Published on: Dec 19, 2023
Published by: University of Žilina
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2023 Jozef Vičan, Jozef Gocál, Jaroslav Odrobiňák, published by University of Žilina
This work is licensed under the Creative Commons Attribution 4.0 License.