Design resistance strengths of composite steel box girder bridge using different codes

Author:

El-masry Ay. A.ORCID,Rabou S. M. Abd,Ghannam M.

Abstract

AbstractBridges design based on prescriptive normative rules regarding loads and their combinations, safety factors, material properties, analysis methods, required verifications, and other issues that are included in design codes. In addition, Composite Steel Box Girder (CSBG) bridges present a prominent structural solution for straight and curved bridges with moderate spans, because of their large bending resistance and high torsional stiffness as well as rapid erection. This paper aims to perform a detailed theoretical comparative study between fundamental calculations of the design resistance strengths of shear, Vn or VRd, and flexure, Mn or MRd, in positive (sagging) and negative (hogging) moment regions, of CSBG highway bridges. The comparison is involved with design specification methodologies proposed by Egyptian Code of Practice (ECP-207-part 6), Bridge Design Specifications (BDS) presented by Association of State Highway and Transportation Officials (AASHTO), and European Standard (EC-4). On its turn, the study aims to standing on differences and similarities between considered standards in the design of such bridges.

Funder

Mansoura University

Publisher

Springer Science and Business Media LLC

Reference24 articles.

1. El-Masry Ay et al (2022) Part I: Preliminary proportion limits of composite steel box girder in bridges using different codes. Mansoura Eng J Res 47(6):2208–1310

2. Chavel B, Carnahan J (2022) Design Example 4: three-span continuous straight composite steel tub girder bridge (AISC-B955–22), in steel bridge design handbook (SBDH), ch. Appendix-4, M.A. Grubb & Associates et al. Eds., 2021 ed. NSBA: National Steel Bridge Alliance, a division of the American Institute of Steel Construction (AISC), U.S.A. [Online]. Available: www.aisc.org/nsba

3. DC Iles (2004) Design guide for composite box girder bridges, 2nd ed. SCI Publication P140, Silwood Park, Ascot, UK: Steel construction institute (SCI).ISBN:978–1–85–942–147–4.

4. CODE 207- (2015 ) Egyptian code for planning, design & construction of bridges and elevated intersections -PART6: analysis & design of steel bridges, H.B.R.C., Ministry of Housing, Utilities & Urban Communications, A.R.E.

5. AASHTO LRFD Bridge design specifications, 9th Ed., (2020), (Pub. Code: LRFDBDS-9), American association of state highway and transportation officials AASHTO, Washington, DC, ISBN:978–1–56051–738–2.

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