A network model for deep bed filtration of solid particles and emulsion drops

作者: S. D. Rege , H. S. Fogler

DOI: 10.1002/AIC.690341102

关键词:

摘要: … varies depending on whether the particles are solids or emulsion droplets. So0 and Radke (1 984) have shown that emulsion droplets, unlike solid particles, do not deposit on other …

参考文章(32)
Hemant Pendse, Chi Tien, A simulation model of aerosol collection in granular media Journal of Colloid and Interface Science. ,vol. 87, pp. 225- 241 ,(1982) , 10.1016/0021-9797(82)90385-X
Hwaili Soo, Clayton J. Radke, Flow mechanism of dilute, stable emulsions in porous media Industrial & Engineering Chemistry Fundamentals. ,vol. 23, pp. 342- 347 ,(1984) , 10.1021/I100015A014
MUHAMMAD SAHIMI, H. TED DAVIS, L.E. SCRIVEN, DISPERSION IN DISORDERED POROUS MEDIA Chemical Engineering Communications. ,vol. 23, pp. 329- 341 ,(1983) , 10.1080/00986448308940483
J. P. Herzig, D. M. Leclerc, P. Le. Goff, Flow of Suspensions through Porous Media—Application to Deep Filtration Industrial & Engineering Chemistry. ,vol. 62, pp. 8- 35 ,(1970) , 10.1021/IE50725A003
K.J. Ives, V. Pienvichitr, Kinetics of the filtration of dilute suspensions Chemical Engineering Science. ,vol. 20, pp. 965- 973 ,(1965) , 10.1016/0009-2509(65)80094-X
Scott Kirkpatrick, Percolation and Conduction Reviews of Modern Physics. ,vol. 45, pp. 574- 588 ,(1973) , 10.1103/REVMODPHYS.45.574
P. G. Saffman, The lift on a small sphere in a slow shear flow Journal of Fluid Mechanics. ,vol. 22, pp. 385- 400 ,(1965) , 10.1017/S0022112065000824
Y. C. Yortsos, M. Sharma, Application of percolation theory to noncatalytic gas‐solid reactions Aiche Journal. ,vol. 32, pp. 46- 55 ,(1986) , 10.1002/AIC.690320106
H. Soo, M.C. Williams, C.J. Radke, A filtration model for the flow of dilute, stable emulsions in porous media. II: Parameter evaluation and estimation Chemical Engineering Science. ,vol. 41, pp. 273- 281 ,(1986) , 10.1016/0009-2509(86)87008-7
K.C. Khilar, H.S. Fogler, J.S. Ahluwalia, Sandstone water sensitivity: Existence of a critical rate of salinity decrease for particle capture Chemical Engineering Science. ,vol. 38, pp. 789- 800 ,(1983) , 10.1016/0009-2509(83)80188-2