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Numerical simulation of shrinkage and creep in patch-repaired axially loaded reinforced concrete short columns

Nounu, G. F.; Shambira, M. V.; Nounu, Ghassan

Authors

G. F. Nounu

M. V. Shambira



Abstract

This paper presents numerical results obtained from finite element simulations of the time-dependent behaviour of moderately loaded patch-repaired reinforced concrete short columns. Patch repair is a structural concrete repair method in which damaged concrete is replaced with one of a wide range of materials. Relative to the concrete substrate, the patch repair materials used in this study had different properties, such as the elastic modulus, shrinkage and creep. A priori, it would appear that simple theory such as the engineer's theory of bending cannot be used to quantify the behaviour of the patch-repaired member. Experimental evidence needed to clarify such issues remains scarce. The finite element simulations performed in this study indicate that shrinkage and creep cause the progressive shedding of the load carried by the patch repair to the concrete substrate. Finite element results compare favourably with the predictions of the engineer's bending theory. Relative to test results some qualitative agreement is observed though there is significant quantitative deviation. © 2001 Elsevier Science Ltd. All rights reserved.

Citation

Nounu, G. F., Shambira, M. V., & Nounu, G. (2001). Numerical simulation of shrinkage and creep in patch-repaired axially loaded reinforced concrete short columns. Computers and Structures, 79(29-30), 2491-2500. https://doi.org/10.1016/S0045-7949%2801%2900132-8

Journal Article Type Article
Publication Date Nov 7, 2001
Journal Computers and Structures
Print ISSN 0045-7949
Publisher Elsevier
Peer Reviewed Not Peer Reviewed
Volume 79
Issue 29-30
Pages 2491-2500
DOI https://doi.org/10.1016/S0045-7949%2801%2900132-8
Keywords numerical simulation, shrinkage, creep, patch-repaired, axially loaded, reinforced concrete, short columns
Public URL https://uwe-repository.worktribe.com/output/1091912
Publisher URL http://dx.doi.org/10.1016/S0045-7949(01)00132-8