[1] |
Liu Wei(刘伟), Fan Aiwu(范爱武),Huang Xiaoming(黄晓明). Theory and Applications of Porous Media of Heat and Mass Transfer(多孔介质传热传质理论与应用)[M]. Beijing:Science Press, 2006: 1-7
|
[2] |
Fatt I. The network model of porous media(I): Capillary pressure characteristics [J]. Transactions of AIME, 1956, 207(1):144-159
|
[3] |
Blunt M J, Jackson M D, Piri M, Valvatne P H. Detailed physics predictive capabilities and macroscopic consequences for pore-network models of multiphase flow [J]. Advances in Water Resources, 2002, 25(1): 1069-1089
|
[4] |
Joshi M. A class of stochastic models for porous media [D]. Lawrence Kansas: University of Kansas, 1974
|
[5] |
Politis M G, Kikkinides E S, Kainourgiakis M E, Stubos A K. A hybrid process-based and stochastic reconstruction method of porous media [J]. Microporous and Mesoporous Materials, 2008, 110: 92-99
|
[6] |
Krohn C E, Thompson A H. Fractal sandstone pores: automated measurements using scanning-electron- microscope images [J]. Phys. Rev. B, 1986, 33: 6366-6374
|
[7] |
Mcmahon P J, Snook I K. Small angle scattering from porous mass fractal solids[J]. J. Chem.Phys., 1996, 105: 2223-2225
|
[8] |
Yu B M, Li J H. Some fractal characters of porous media [J]. Fractals, 2001, 9(3): 365-372
|
[9] |
Chen Yongping (陈永平),Shi Mingheng (施明恒). Determination of effective thermal conductivity for porous media using fractal techniques[J]. Journal of Engineering Thermophysics(工程热物理学报), 1999, 20(5): 608-612
|
[10] |
Shi Mingheng (施明恒), Fan Hui(樊荟). A fractal modal for evaluating heat conduction in porous media[J]. Journal of Thermal Science and Technology (热科学与技术), 2002, 1(1): 28-31
|
[11] |
Zheng Q, Yu B M, Wang S F, Luo L. A diffusivity model for gas diffusion through fractal porous media[J]. Chemical Engineering Science, 2012, 68: 650-655
|
[12] |
Shi Y, Xiao J S, Quan S H, Pan M. Fractal model for prediction of effective hydrogen diffusivity of gas diffusion layer in proton exchange membrane fuel cell [J].International Journal of Hydrogen Energy, 2010, 35: 2863-2867
|
[13] |
Jilesen J, Kuo J, Lien F S. Three-dimensional midpoint displacement algorithm for the generation of fractal porous media [J]. Computers & Geosciences, 2012, 46: 164-173
|
[14] |
Kikkinides E S, Burganos V N. Structural and flow properties of binary media generated by fractional Brownian motion models [J]. Phys. Rev. E, 1999, 59(6): 7185-7194
|
[15] |
Tao Gaoliang(陶高梁). Fractal approach on pore structure of rock and soil porous media and its applications[D]. Wuhan: Wuhan University of Technology, 2010
|
[16] |
He Yaling (何雅玲), Li Qing(李庆), Wang Yong(王勇), Tang Guihua(唐桂华). Lattice Boltzmann method and its applications in engineering thermophysics[J]. Chinese Sci. Bull.(科学通报), 2009, 54: 2638-2656
|
[17] |
Luo L S, Girimaji S S. Theory of the lattice Boltzmann method: two-fluid model for binary mixtures [J]. Phys. Rev. E, 2003, 67: 036302
|
[18] |
Guo Z L, Zheng C, Shi B C. A coupled BGK model for the Boussinesq equtions[J]. International Journal for Numerical Methods in Fluids, 2002, 39: 325-342
|
[19] |
He Yaling (何雅玲), Wang Yong(王勇), Li Qing(李庆). Lattice Boltzmann Method: Theory and Applications(格子Boltzmann方法的理论及应用)[M]. Beijing:Science Press, 2009
|
[20] |
Xuan Y M, Zhao K, Li Q. Investigation on mass diffusion process in porous media based on lattice Boltzmann method [J]. Heat Mass Transfer, 2010, 46:1039-1051
|
[21] |
Wang M R, Wang J K, Ning P, Chen S Y. Mesoscopic predictions of the effective thermal conductivity for microscale random porous media[J]. Phys. Rev. E, 2007, 75: 036702
|