Decision theoretic approach for identification of optimal proof load with sparse resistance information

M. Kapoor, J. D. Sørensen, S. Ghosh, S. Thöns

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

1 Citationer (Scopus)

Abstract

Proof load testing may be performed to confirm the reliability of the bridge for an existing classification or to prove the reliability for a higher classification. In this paper, a probabilistic decision analysis approach is applied to the scenario for the evaluation of target proof load in the situation where information on the bridge resistance model is lacking. In this case, the resistance model is established by proof loading and taking very basic prior knowledge into account. The decision scenario is modelled in the context of the proof load test planner who shall choose the required load level for assessment of a bridge. The choice of the load level depends on the risks due to the testing and the expected benefit gain from the test. Information acquired about the loading response from monitoring during the proof load testing is modelled by taking basis in the model uncertainty formulation. The optimal proof load level for classification of a single lane, simply supported bridge of 8m span subjected to live load from very heavy (gross weight > 80 tons) transport vehicles was calculated. The optimal proof load level was identified as leading to a positive expected benefit gain to the decision maker while also satisfying target reliability criteria for remaining service life. The analysis was performed for the evaluation of bridge performance with respect to five classifications of very heavy transport vehicles with different vehicle weights and configurations.

OriginalsprogEngelsk
TitelBridge Maintenance, Safety, Management, Life-Cycle Sustainability and Innovations : Proceedings of the 10th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2020
RedaktørerHiroshi Yokota, Dan M. Frangopol
Antal sider9
ForlagCRC Press
Publikationsdato2021
Sider789-797
ISBN (Trykt)9780367232788
ISBN (Elektronisk)9780429279119
DOI
StatusUdgivet - 2021
Begivenhed10th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2020 - Sapporo, Japan
Varighed: 11 apr. 202115 apr. 2021

Konference

Konference10th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2020
Land/OmrådeJapan
BySapporo
Periode11/04/202115/04/2021

Bibliografisk note

Funding Information:
The financial support and assistance from the Danish Road Directorate is greatly acknowledged.

Publisher Copyright:
© 2021 Taylor & Francis Group, London

Fingeraftryk

Dyk ned i forskningsemnerne om 'Decision theoretic approach for identification of optimal proof load with sparse resistance information'. Sammen danner de et unikt fingeraftryk.

Citationsformater