Reliability-Based Proof Load Factors for Assessment of Bridges

Author:

Christensen Christian Overgaard1ORCID,Damsgaard Kenneth Dahl Schiøttz12,Sørensen John Dalsgaard1ORCID,Engelund Svend2,Goltermann Per3,Schmidt Jacob Wittrup1

Affiliation:

1. Department of the Built Environment, University of Aalborg, 9220 Aalborg, Denmark

2. Transport Infrastructure, COWI A/S, 9000 Aalborg, Denmark

3. Department of Civil and Mechanical Engineering, Technical University of Denmark, 2800 Kongens Lyngby, Denmark

Abstract

Advanced reliability assessment can be required when evaluating existing bridge structures through proof load testing. The target load of a proof load test typically requires input from resistance models; however, bridges with a low documentation level are often the most relevant for proof load testing, and resistance models thus involve significant uncertainties. This paper presents a different approach to proof loading and target proof load, in which the resistance model is not included in the determination of this load. Instead, the target proof load is determined based on load models coupled to the desired target failure probability, thus ensuring sufficient safety of the existing bridge. The method is in line with the proposal for a new Eurocode on assessment of existing structures and is deemed to be superior to existing approaches. An essential assumption of the method is that monitoring systems can identify stop criteria before irreversible damage occurs. The approach was applied in a case study, where an OT-slab bridge with a span of 6.5 m was proof-load-tested and reclassified for capacity upgrading of a road stretch in Denmark.

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference70 articles.

1. Load rating a prestressed concrete double t-beam bridge without plans by field testing;Aguilar;Transp. Res. Rec.,2015

2. Towards standardisation of proof load testing: Pilot test on viaduct zijlweg;Lantsoght;Struct. Infrastruct. Eng.,2017

3. Proof load testing for bridge assessment and upgrading;Faber;Eng. Struct.,2000

4. Halicka, A., Lantsoght, E.O.L., and Hordijk, D.A. (2017). Rating of Concrete Road Bridges with Static Proof Load Tests, ACI Symposium Publication.

5. High magnitude loading of concrete bridges;Schmidt;ACI Struct. J.,2018

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