10 Ju Y, Yang Y, Song Z, et al. A statistical model for porous structure of rocks. Sci China Ser E: Tech Sci, 2008, 51: 2040-2058
[5]
11 Wildenschild D, Sheppard A P. X-ray imaging and analysis techniques for quantifying pore-scale structure and processes in subsurface porous medium systems. Adv Water Resour, 2013, 51: 217-246
[6]
12 Dunsmuir J H, Ferguson S, D'Amico K, et al. X-ray microtomography: A new tool for the characterization of porous media. In: SPE Annual Tech Conf Exhibit, 1991
[7]
13 van Geet M, Swennen R, David P. Quantitative coal characterisation by means of microfocus X-ray computer tomography, colour image analysis and back-scattered scanning electron microscopy. Int J Coal Geol, 2001, 46: 11-25
[8]
14 Karacan C, Okandan E. Adsorption and gas transport in coal microstructure: Investigation and evaluation by quantitative X-ray CT imaging. Fuel, 2001, 80: 509-520
17 Blunt M J, Bijeljic B, Dong H, et al. Pore-scale imaging and modelling. Adv Water Resour, 2013, 51: 197-216
[12]
20 Blunt M J, Jackson M D, Piri M, et al. Detailed physics, predictive capabilities and macroscopic consequences for pore-network models of multiphase flow. Adv Water Resour, 2002, 25: 1069-1089
[13]
21 Yiotis A G, Tsimpanogiannis I N, Stubos A K, et al. Pore-network study of the characteristic periods in the drying of porous materials. J Colloid Interface Sci, 2006, 297: 738-748
[14]
22 Hazlett R. Simulation of capillary-dominated displacements in microtomographic images of reservoir rocks. Trans Porous Media, 1995, 20: 21-35
6 Barker-Read G R, Radchenko S A. The relationship between the pore structure of coal and gas-dynamic behaviour of coal seams. Min Sci Tech, 1989, 8: 109-131
[19]
7 Chasseta C, Jerker J, Erlstr?mc M, et al. Scenario simulations of CO2 injection feasibility, plume migration and storage in a saline aquifer, Scania, Sweden. Int J Greenhouse Gas Control, 2011, 5: 1303-1318
18 Sholokhova Y, Kim D, Brent Lindquist W. Network flow modeling via lattice-Boltzmann based channel conductance. Adv Water Resour, 2009, 32: 205-212
[23]
19 Fatt I. The network model of porous media I. Capillary pressure characteristics. Trans AIME, 1956, 207: 144-159
[24]
24 Degruyter W, Burgisser A, Bachmann O, et al. Synchrotron X-ray microtomography and lattice Boltzmann simulations of gas flow through volcanic pumices. Geosphere, 2010, 6: 470-481
[25]
25 Dong H. Micro-CT Imaging and Pore Network Extraction. London: Imperial College Press, 2007
[26]
26 Gonzalez R C, Woods R E, Eddins S L. Digital image processing using MATLAB. 2nd Ed. Knoxville: Gatesmark Publishing, 2009
28 Qian Y H, D'Humières D, Lallemand P. Lattice BGK models for Navier-Stokes equation. Europhys Lett, 1992, 17: 479-484
[29]
29 薛定谔. 多孔介质中的渗流物理. 北京: 石油工业出版社, 1982
[30]
30 Tanikawa W, Shimamoto T. Klinkenberg effect for gas permeability and its comparison to water permeability for porous sedimentary rocks. Hydrol Earth Syst Sci Discuss, 2006, 3: 1315-1338
32 Latt J. Palabos, parallel lattice Boltzmann solver. http://www.lbmethod.org/palabos/2009
[33]
33 Dong J J, Hsu J Y, Wu W J, et al. Stress-dependence of the permeability and porosity of sandstone and shale from TCDP Hole-A. Int J Rock Mech Min Sci, 2010, 47: 1141-1157