A Life-cycle Analysis Approach applied to the Strengthening of the Jarama Steel Bridge

Author:

Orcesi Andre1,Feraille Adélaïde2,Chataigner Sylvain3

Affiliation:

1. University Paris-Est, IFSTTAR, Materials and Structures department, Champs-sur-Marne, France

2. Université Paris-Est, Laboratoire Navier (UMR 8205), Marne-la-Vallée, France

3. IFSTTAR, MAST department, SMC Laboratory, Allée des Ponts et Chaussées, Bouguenais, France

Abstract

<p>This paper presents some results obtained in the Infravation research project called “Fast and effective solution for steel bridges life-time extension” (FASSTbridge). The aim of this project is to develop and demonstrate a reliable, preventive, cost-effective and sustainable solution for steel bridges fatigue life-time extension. As a demonstration example, the Jarama Bridge was selected in this project. The Jarama bridge is located in the outskirts of the city of Madrid, over the river Jarama on road M-111, and has a total length of 115,5m and 5 spans (max span length 33,5m). Erected in the 1960s, it has suffered since then a considerable increase of traffic flow which was not considered at its design stage. This paper leads a cost-benefit analysis and a life cycle analysis of the CFRP solution compared with traditional techniques (use of steel plates) and considering the economic and environmental profit of the preventing policy. The aim is to adopt a preventive strategy to allow road administrations enlarging the service life of steel and composite steel bridges in a cost-effective and sustainable manner.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference8 articles.

1. , IABSE Symposium: Tomorrow’s Megastructures, Nantes, France, 19-21 September 2018

2. NCHRP 503 (2003). Application of Fibre Reinforced Polymer Composites to the Highway Infrastructure, NCHRP REPORT 503, ISBN 0-309-08769-4.

3. Wahbeh M., Boundouki R., Weidemueller M., Chataigner S., Martin E., Sopena L. Increasing the remaining fatigue service life of steel structures using adhesively bonded composites – Design approach developed in FASSTbridge. Proceedings of CICE 2018. Paris, 2018.

4. Garcia-Sanchez D., Wabeh M., Lehmann F., Chataigner S., Sopena L., Birtel V. FASSTBridge methodology and strengthening system: the Jarama Bridge experience. Proceedings of CICE 2018. Paris, 2018.

5. Sopeña, L. et al. Deliverable D5.5 FASSTbridge technical, environmental and cost benefit report – Study case. FASSTBRIDGE, Fast and Efficient Methodology for Steel Bridges Life-Time Extension. 2018.

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