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Concrete. --- Porosity. --- Diffusion coefficient --- Transport properties --- Diffusion coefficient --- Transport properties
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Moisture content --- Transport properties --- Fluid infiltration --- Moisture content --- Transport properties --- Fluid infiltration
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This contribution presents an analytical and a numerical model for predicting the effective thermal conductivity of porous electrode coatings as a function of microstructure parameters. Both models account for the morphological parameters and the thermal bulk materials of the constitutive cell components. The results of both models have been successfully verified against each other and validated with literature data as well as own experimental measurements.
Mechanical engineering & materials --- thermal conductivity --- thermal transport properties --- porous electrodes --- lithium-ion cell --- lithium-ion battery --- Wärmeleitfähigkeit --- thermische Transporteigenschaften --- poröse Elektroden --- Lithium-Ionen Zelle --- Lithium-Ionen Batterie
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Porosity. --- Porous materials. --- Permeability. --- Mathematical models. --- Mortars material --- Porosimeters --- Heat of hydration --- Voids --- Transport properties --- Diffusion coefficient --- Chlorides --- Capillarity --- Frost penetration --- Carbonation --- Air entrainment --- Mortars material --- Porosimeters --- Heat of hydration --- Voids --- Transport properties --- Diffusion coefficient --- Chlorides --- Capillarity --- Frost penetration --- Carbonation --- Air entrainment
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