In this paper, a new model is proposed to describe the coupled transport of ionic species and ionic solution in unsaturated concrete. The main difference between the present model and most existing models is the inclusion of osmotic effect due to small pore sizes and osmosis-flow due to electrochemical reactions taking place at two electrodes. Chemical- and electro-osmosis is a well-known phenomenon in soils and clays. Cement and concrete materials, whose microscopic properties are very similar to clays, are expected to have a similar behaviour. However, despite the large amount of work that has been published on the osmosis of soils and clays, there is very little work on the cement and concrete materials. The aim of this paper is to address this problem. The model proposed in the paper is applied to predict the chloride penetration in unsaturated concrete and the electrochemical chloride removal in chloride-contaminated concrete by applying an external current. Numerical examples are presented and results are validated using published experimental data.
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January 2016
Research Article|
June 30 2015
Modelling of chloride penetration in unsaturated concrete Available to Purchase
Jian Geng;
Jian Geng
Associate Professor
Center of Green Building Materials and Waste Resources Reuse, Ningbo Institute of Technology, Zhejiang University, China and School of Marine Science and Engineering, University of Plymouth, UK
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Long-yuan Li;
Long-yuan Li
Professor of Structural Engineering
School of Marine Science and Engineering, University of Plymouth, UK
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Yu Wang
Yu Wang
Lecturer
School of Computing, Science and Engineering, University of Salford, UK
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Publisher: Emerald Publishing
Received:
January 05 2015
Revision Received:
February 12 2015
Accepted:
March 11 2015
Online ISSN: 1751-7605
Print ISSN: 0951-7197
ICE Publishing: All rights reserved
2015
Advances in Cement Research (2016) 28 (1): 51–61.
Article history
Received:
January 05 2015
Revision Received:
February 12 2015
Accepted:
March 11 2015
Citation
Geng J, Li L, Wang Y (2016), "Modelling of chloride penetration in unsaturated concrete". Advances in Cement Research, Vol. 28 No. 1 pp. 51–61, doi: https://doi.org/10.1680/adcr.15.00003
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