A Parametric Study of an old Concrete Trough Bridge using non-linear Finite Element analysis

Author:

Sarmiento Silvia J.1,Åkergren David1,Gustafsson Jacob1,Gonzalez-Libreros Jaime H.1,Sas Gabriel1,Elfgren Lennart1,Coric Ibrahim2,Enoksson Ola2

Affiliation:

1. Luleå University of Technology, Luleå, Sweden

2. Trafikverket, Luleå, Sweden

Abstract

<p>At least 20% of existing railway bridges in Sweden are reinforced concrete (RC) trough bridge that consist in a slab carried by two longitudinal main beams. As these bridges are getting old, there is an urging need to assess their remaining capacity with the aim of prolonging their service lives. The limited literature on the topic has pointed out that there is a significant difference between the capacity predicted by available codes and that obtained experimentally. In this paper, a review of the Bridge and Tunnel Management database (BaTMan) of railway infrastructure in Sweden, is carried out to gain an overview of the current state of the Swedish railway bridge, with focus on trough bridges. Then, a non-linear finite element model is calibrated using the experimental results of the previous testing of a decommissioned trough bridge. The model is used in a parametric study where the effect of key mechanical parameters on the capacity of trough bridges is studied.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference9 articles.

1. BaTMan (2021). BaTMan – Bro och Tunnel Management. Trafikverket.

2. BBK 94. (1994). Boverkets handbook om Betongkonstruktioner Band I Konstruktion. Band 2 Material, utforande och kontroll. Stockholm: Boverket. Svensk Byggtjanst.

3. Bell (2004). D1.2 European Railway Bridge Demography. Network Rail Consulting.

4. Dinas, A., Th.N. Nikolaidis., & C.C. Baniotopoulos (2017). Sustainable Restoration Criteria for Historical a Steel Railway Bridge. Procedia Environmental Sciences 38(2017), 578-585.

5. Du, G (2015). Life Cycle Assessment of Bridges, Model development and case studies. [Doctoral Thesis], Kungliga Tekniska Högskolan, Department of Architecture and Built Environment.

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