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Development of a traffic load model for bridge structures within an urban subway system

 Development of a traffic load model for bridge structures within an urban subway system
Auteur(s): , , , ,
Présenté pendant IABSE Congress: Structural Engineering for Future Societal Needs, Ghent, Belgium, 22-24 September 2021, publié dans , pp. 734-740
DOI: 10.2749/ghent.2021.0734
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Subway systems are a key component of today’s urban infrastructure. However, current engineering standards such as the Eurocode only give few indications regarding the modelling of traffic loads fo...
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Détails bibliographiques

Auteur(s): (Technical University of Munich, Chair of Concrete and Masonry Structures, Munich, Germany)
(Technical University of Munich, Chair of Concrete and Masonry Structures, Munich, Germany)
(Technical University of Munich, Chair of Concrete and Masonry Structures, Munich, Germany)
(Stadtwerke München GmbH, Munich, Germany‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌)
(Stadtwerke München GmbH, Munich, Germany‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌)
Médium: papier de conférence
Langue(s): anglais
Conférence: IABSE Congress: Structural Engineering for Future Societal Needs, Ghent, Belgium, 22-24 September 2021
Publié dans:
Page(s): 734-740 Nombre total de pages (du PDF): 7
Page(s): 734-740
Nombre total de pages (du PDF): 7
DOI: 10.2749/ghent.2021.0734
Abstrait:

Subway systems are a key component of today’s urban infrastructure. However, current engineering standards such as the Eurocode only give few indications regarding the modelling of traffic loads for subway trains. For this reason, a traffic load model is developed based on load model LM71 from Eurocode 1 - Part 2, the standard load model for rail bridges. The aim is to scale this load model so that it is able to cover the extreme load effects resulting from actual subway trains within the subway network. Within the scope of these investigations, different structural systems and load effects are studied, as well as different strategies for modifying LM71 and its scaling factor α. Additionally, the results obtained for simplified beam systems are validated on real structures to account for effects like two-dimensional bearing capacity for the determination of the scaling factor α. These investigations are performed for the subway system of the city of Munich.

Mots-clé:
ponts ferroviaires
Copyright: © 2021 International Association for Bridge and Structural Engineering (IABSE)
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