Mercury injection measurements used in the prediction of rock pore dimensions employing a crystalline lattice of capillaries
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry
Reference5 articles.
1. Evaluation of mercury porosimeter experiments using a network pore structure model;Androutsopoulos;Chem. Engng Sci.,1979
2. Analysis of a moisture characteristic curve employing a crystalline lattice of capillary pores;Cox;J. Soil Sci.,1983
3. Prediction of rock electrical conductivity from mercury injection measurements;Katz;J. geophys. Res.,1987
4. Application of a stochastic network pore model to oil-bearing rock with observations relevant to oil recovery;Mann;Chem. Engng Sci.,1981
5. Note on a method of determining the distribution of pore size in a porous material;Washburn;Proc. natn. Acad. Sci. U.S.A.,1921
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1. Porous Media Characterization Using Mercury Porosimetry Simulation. 1. Description of the Simulator and Its Sensitivity to Model Parameters;Industrial & Engineering Chemistry Research;2001-07-10
2. On modeling, simulation and statistical properties of realistic three dimensional porous networks;Journal of Porous Materials;2001
3. Network modelling of pore structure and transport properties of porous media;Chemical Engineering Science;1993
4. Quantification of Random Pore Structures of Porous Adsorbents;Adsorption Science & Technology;1991-12
5. Determination of pore connectivity by mercury porosimetry;Chemical Engineering Science;1991
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