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Multi-scale modelling of the permeability evolution of fine sands during cement suspension grouting with filtration
Authors:Fatiha Bouchelaghem
Affiliation:Laboratory of Mechanics and Technology, ENS Cachan, University Pierre and Marie Curie, France
Abstract:Fluid flow during permeation grouting of fine sands with a microcement-based grout is studied by assuming that the heterogeneous medium composed of the initial granular skeleton, filtered cement and the interstitial fluid phase can be replaced by a continuous equivalent medium at the macroscopic level. Consequently, the method of Homogenization of Periodic Structures (HPS) is used to identify the effective permeability tensor evolution under the effect of cement filtration. The expression of the macroscopic permeability tensor derived through the HPS procedure is shown to depend on the permeating fluid viscosity and the geometrical arrangement of the sand grains and cement deposit within the microstructure. Numerical computations are made using various two-dimensional and three-dimensional microstructures, and the model results are confronted with grouting experiments performed on small scale columns in the laboratory.
Keywords:Micro-cement grouting  Filtration  Multi-scale modelling  Evolving microstructure  Finite element method  Experimental validation
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