Interpretation of capillary pressure curves using invasion percolation theory

Author:

Zhou Dengen,Stenby Erling H.

Publisher

Springer Science and Business Media LLC

Subject

General Chemical Engineering,Catalysis

Reference16 articles.

1. Androutsopoulos, G. P. and Mann, R., 1979: Evaluation of Mercury porosimetry experiments using network pore structure model,Chem. Eng. Sci. 34, 1203?1212.

2. Chatzis, I. and Dullien, F. A. L., 1977: Modelling pore structure by 2-D and 3-D networks of capillary tubes to simulate the drainage capillary pressure curves of sandstones,J. Canad. Petrol. Technol. 16, 97?108.

3. Diaz, C. E., Chatzis, I., and Dullien, F. A. L., 1987: Simulation of capillary pressure curve using bond correlated site percolation on a sample cubic network,Transport in Porous Media 2, 215?240.

4. Dullien, F. A. L. and Dhawan, G. K., 1973: Photomicrographic size distribution determination of non-spherical objects,Powder Tech. 7, 305?313.

5. Dullien, F. A. L. and Dhawan, G. K., 1974: Characterization of pore structure by a combination of quantitative photomicrography and mercury porosimetry,J. Colloid Interface Sci. 42(2), 337?349.

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