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NUMERICAL MODELLING AND STRUT-AND-TIE CONCEPTS FOR SEISMIC DESIGN AND ASSESSMENT OF PRE-CAST TWO-COLUMN BENTS

Title
NUMERICAL MODELLING AND STRUT-AND-TIE CONCEPTS FOR SEISMIC DESIGN AND ASSESSMENT OF PRE-CAST TWO-COLUMN BENTS
Type
Article in International Conference Proceedings Book
Year
2023
Authors
Mário Jorge Pimentel
(Author)
FEUP
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Pedro Delgado
(Author)
Other
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António Arêde
(Author)
FEUP
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Nelson Vila Pouca
(Author)
FEUP
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José Rui Pinto
(Author)
Other
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Lucas carvalho
(Author)
FEUP
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Conference proceedings International
Pages: 1-12
9th ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering, COMPDYN 2023
Athens, 12 June 2023 through 14 June 2023
Indexing
Publicação em Scopus Scopus - 0 Citations
Scientific classification
CORDIS: Technological sciences > Engineering > Civil engineering > Structural engineering
FOS: Engineering and technology > Civil engineering
Other information
Authenticus ID: P-00Z-CTD
Resumo (PT):
Abstract (EN): Precast structures are more common in zones not affected by earthquakes or affected by low - to moderate-intensity earthquakes; the application of precast structures in zones of higher seismic intensity is unusual due to the seismic performance uncertainty of these structures. Concerning precast bridges, special attention needs to be paid on the column to cap-beam connections, as well as the methods to anchor the column longitudinal bars into the cap beam or foundation. The constructability of these joints often becomes unworkable due to the high reinforcement concentration that current standards require. Moreover, some design rules are rather unclear and the link to the flow of forces in the joint is sometimes lost. In this paper, to ensure a clear understanding of the forces flow, strut-and-tie concepts were applied to design a column-to-cap-beam joint region of a viaduct located in southern Europe. In addition, different ductility classes were considered. Emphasis was given to nonlinear numerical models developed to validate the strut-and-tie models as well as to evaluate the two ductility scenarios performed. As a modeling strategy, a rotating smeared crack approach was considered; also, constitutive models with fracture energy were considered to simulate the concrete mechanical behavior. Numerical results will be further validated through an experimental campaign planned to assess the structural performance of the designed solution. © 2023 COMPDYN Proceedings. All rights reserved
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 12
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