Study via the finite element method of the behavior of deck joints in a bridge composed of precast concrete segments

Author:

Possamai Spessatto Rafaella1,Campos Filho Américo1ORCID,Manica Lazzari Bruna2ORCID,Manica Lazzari Paula1ORCID,Rodrigues Pacheco Alexandre1

Affiliation:

1. Programa de Pós‐Graduação em Engenharia Civil Universidade Federal do Rio Grande do Sul Porto Alegre Rio Grande do Sul Brazil

2. Escola Politécnica Pontifícia Universidade Católica do Rio Grande do Sul Porto Alegre Rio Grande do Sul Brazil

Abstract

AbstractThere is a demand for research to better understand the structural performance of segmental bridge joints. In this context, the main objective of this work is to present a 3D numerical modeling using the Finite Element Method (FEM) to physically simulate the behavior of concrete joints in a segmental concrete bridge. The analysis was conducted using the design of a real bridge, and the structure studied was the main span of the New Guaíba Bridge, located in Porto Alegre, RS, Brazil. The modeling was implemented using ANSYS software, version 21.2. The simulation considers a complete model of the span to provide a more realistic determination of the joint openings and the stress distributions in the elements. It is crucial to emphasize that the results obtained from the model do not reproduce the observed behavior of the studied bridge. The analysis considered only one span with simplified boundary conditions and higher loads than those typically adopted in usual design procedures.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Wiley

Reference13 articles.

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2. FIB Bulletin 82.Precast segmental bridges volume 82 of Fib Bulletin.Fib Lausanne.2017.https://doi.org/10.35789/fib.BULL.0082. Accessed 23 Nov 2023.

3. Brazilian Government.New Guaiba bridge was inaugurated in Rio Grande do Sul.2020.https://www.gov.br/pt‐br/noticias/transito‐e‐transportes/2020/12/inaugurada‐nova‐ponte‐do‐guaiba‐no‐rio‐grande‐do‐sul. Accessed 16 Jun 2021.

4. FIB Bulletin 45.Practitioners' guide to finite element modelling of reinforced concrete structures volume 45 of Fib Bulletin.Fib Lausanne.2008.https://doi.org/10.35789/fib.BULL.0045. Accessed 23 Nov 2023.

5. Structural analysis of a prestressed segmented girder using contact elements in ANSYS;Lazzari PM;Comput Concr,2017

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