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Research Article

Water Permeability of Mortar Investigated by Partial Bounce-Back Lattice Boltzmann Method

Kai LI1,2Li XU1,2Lulu YANG1,2Caijun SHI1,2( )
Key Laboratory for Green and Advanced Civil Engineering Materials and Application Technology of Hunan Province, College of Civil Engineering, Hunan University, Changsha 410082, China
International Science and Technology Innovation Center for Green and Advanced Civil Engineering Materials of Hunan Province, Changsha 410082, China
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Abstract

To clarify the mechanism of water transport in mortar, a three-phase model consisting of fine aggregate–interfacial transition zone (ITZ) –cement paste was developed to represent mortar, and then the water transport process in mortar was simulated by a partial bounce–back lattice Boltzmann method (PBB–LBM). The influences of aggregate volume fraction, the ITZ’s thickness and pore structure on the water permeability of mortar were evaluated. The results show that mortar’s water permeability declines at an increased aggregate content and it is always below cement paste’s water permeability at a thin thickness of ITZ and a low porosity. Once the thickness of ITZ exceeds 150 μm or its effective porosity is two times greater than that of cement paste, the permeability of mortar is close to or even above the matrix’s water permeability. This is attributed to the competitions among the ITZ effect, aggregate dilution effect and tortuous transport path in mortar.

CLC number: TU528 Document code: A Article ID: 0454-5648(2022)10-2701-11

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Journal of the Chinese Ceramic Society
Pages 2701-2711

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Cite this article:
LI K, XU L, YANG L, et al. Water Permeability of Mortar Investigated by Partial Bounce-Back Lattice Boltzmann Method. Journal of the Chinese Ceramic Society, 2022, 50(10): 2701-2711. https://doi.org/10.14062/j.issn.0454-5648.20220126

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Received: 24 February 2022
Revised: 10 April 2022
Published: 25 August 2022
© 2022 Journal of the Chinese Ceramic Society