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Analytical models for effective hydraulic sorptivity, diffusivity and conductivity of concrete with interfacial transition zone
journal contribution
posted on 2019-10-16, 00:00 authored by Hassan BajiHassan Baji, W Yang, C-Q Li, W ShiThis paper presents analytical models for evaluating effective hydraulic conductivity, diffusivity and sorptivity of concrete considering the properties of the Interfacial Transition Zone (ITZ) and the aggregate size distribution. Results of the proposed models compare well with the experimental results and those obtained from rigorous numerical Finite Element (FE) analysis. It is also found that a change of Interfacial Transition Zone (ITZ) properties has more influence on the effective hydraulic conductivity than it has on the effective hydraulic sorptivity. The significance of the proposed models is that they can estimate the hydraulic sorptivity and diffusivity of concrete by only knowing the hydraulic properties of mortar, effectively extricating the need for sophisticated and time-consuming FE analysis required for estimation of the effective hydraulic conductivity of concrete at the meso-scale. Furthermore, these models offer scientific insight into the effect of different components of concrete on its effective hydraulic properties. © 2019
Funding
Category 1 - Australian Competitive Grants (this includes ARC, NHMRC)
History
Volume
225Start Page
555End Page
568Number of Pages
14ISSN
0950-0618Publisher
Elsevier, NetherlandsPublisher DOI
Peer Reviewed
- Yes
Open Access
- No
Acceptance Date
2019-07-18External Author Affiliations
Wuhan University of Technology, China; Victoria UniversitY; RMIT UniversityEra Eligible
- Yes
Journal
Construction and Building MaterialsUsage metrics
Keywords
Licence
Exports
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