Modelling the expansion and damage generated by alkali–aggregate reaction (AAR) in reinforced concrete structures is quite complex, yet necessary to obtain accurate predictions of the structural response of distressed members. Several AAR models have been developed to predict expansion and damage at the material (microscopic) or the structural (macroscopic) scales. However, those models tend to either neglect or overemphasise the critical physicochemical parameters of the reaction, which limits their applicability. Therefore, a new simple yet reliable finite-element approach is proposed to fill this gap. It accounts for the most important parameters affecting AAR through an engineering approach, without the need for non-technical guesses or to ‘fit’ model parameters. The proposed model is validated through the computational simulation of reinforced concrete specimens cast and monitored in the laboratory. Results show that AAR expansion was accurately simulated by accounting for the anisotropic (stress state dependent) nature of the reaction, mechanical properties deterioration and an analytical equation capable of representing AAR's free expansion. Next steps include validating the approach by simulating real structures and incorporating phenomena like leaching and combined distress mechanisms.
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April 2022
Research Article|
June 26 2021
Engineering-based finite-element approach to appraise reinforced concrete structures affected by alkali–aggregate reaction Available to Purchase
Rodrigo Vilela Gorga;
Rodrigo Vilela Gorga
PhD candidate, Department of Civil Engineering, University of Ottawa, Ottawa, Canada
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Leandro FM Sanchez;
Leandro FM Sanchez
Associate Professor, Department of Civil Engineering, University of Ottawa, Ottawa, Canada (corresponding author: leandro.sanchez@uottawa.ca)
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Beatriz Martín-Pérez;
Beatriz Martín-Pérez
Associate Professor, Department of Civil Engineering, University of Ottawa, Ottawa, Canada
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Martin Noël
Martin Noël
Associate Professor, Department of Civil Engineering, University of Ottawa, Ottawa, Canada
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Publisher: Emerald Publishing
Received:
May 17 2020
Revision Received:
December 21 2020
Accepted:
January 22 2021
Online ISSN: 1751-763X
Print ISSN: 0024-9831
ICE Publishing: All rights reserved
2021
Magazine of Concrete Research (2022) 74 (8): 379–391.
Article history
Received:
May 17 2020
Revision Received:
December 21 2020
Accepted:
January 22 2021
Citation
Gorga RV, Sanchez LF, Martín-Pérez B, Noël M (2022), "Engineering-based finite-element approach to appraise reinforced concrete structures affected by alkali–aggregate reaction". Magazine of Concrete Research, Vol. 74 No. 8 pp. 379–391, doi: https://doi.org/10.1680/jmacr.20.00235
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