參考文獻 |
參考文獻
Al-Housseiny, T. T., Tsai, P. A., & Stone, H. A. (2012). Control of interfacial instabilities using flow geometry. Nature Physics, 8(10), p. 747.
ANSYS. (2015). ANSYS Fluent Theory Guide. ANSYS, Inc.
ANSYS. (2015). ANSYS Fluent Users Guide. ANSYS, Inc.
BatailleJ. (1968). Stabilité d’un écoulement radial non miscible. n Revue de l’Institut Français du Pétrole et Annales des Combustibles Liquides, 23, p. 1349.
Brackbill, J. U., Kothe, D. B., & Zemach, C. (1992). A continuum method for modeling surface tension. Journal of computational physics, 100(2), pp. 335-354.
Brener, E. A., Kessler, D. A., Levine, H., & Rappei, W. J. (1990). Selection of the viscous finger in the 90° geometry. Europhysics Letters, Vol. 13, pp. 161-166.
Callan-Jones, A. C., Joanny, J. F., & Prost, J. (2008). Viscous-fingering-like instability of cell fragments. Physical review letters, 100(25), p. 258106.
Carrillo, L., Magdaleno, F. X., Casademunt, J., & Ortı´n, J. (1996). Experiments in a rotating Hele-Shaw cell. Physical Review E, Vol. 54, pp. 6260-6267.
Celia, M. A., Bachu, S., Nordbotten, J. M., & Bandilla, K. W. (2015). Status of CO2 storage in deep saline aquifers with emphasis on modeling approaches and practical simulations. Water Resources Research, 51(9), pp. 6846-6892.
ChenJ.-D. (1987). Radial viscous fingering patterns in Hele-Shaw cells. Schlumberger-Doll Research, Old Quarry Road, Ridgefield, CT 06877-4108, USA.
Chuoke, R. L., Van Meurs, P., & van der Poel, C. (1959). The instability of slow, immiscible, viscous liquid-liquid displacements in permeable media. Society of Petroleum Engineers, Vol. 216, pp. 188-194.
Dawson, H. E., & Roberts, P. V. (1997). Influence of viscous, gravitational, and capillary forces on DNAPL saturation. Groundwater, 35.2,, pp. 261-269.
Dias, E. O., Alvarez-Lacalle, E., Carvalho, M. S., & Miranda, J. A. (2012). Minimization of Viscous Fluid Fingering: A Variational Scheme for Optimal Flow Rates. Physical Review Letters, p. 144502.
Dias, E. O., Parisio, F., & Miranda, J. A. (2010). Suppression of viscous fluid fingering: A piecewise-constant injection process. Physical Review E 82, p. 067301.
Ferrari, A., & Lunati, I. (2013). Direct numerical simulations of interface dynamics to link capillary pressure and total surface energy. Advances in water resources, 57, pp. 19-31.
Fountain, J. C. (1991). The use of surfactants for in situ extraction of organic pollutants from a contaminated aquifer. Journal of Hazardous Materials, 3, pp. 295-311.
Gorell, S., & Homsy, G. (1983). A theory of the optimal policy of oil recovery by secondary displacement process. Society for Industrial and Applied Mathematics, pp. 79-98.
Gu, Y. (2001). Drop size dependence of contact angles of oil drops on a. Colloids and Surfaces A: Physicochemical and Engineering Aspects, pp. 597-224.
Hill, S. (1952). Channeling in packed columns. Chemical Engineering Science, 1(6), pp. 247-253.
Hirt, C. W., & Nichols, B. D. (1981). Volume of fluid (VOF) method for the dynamics of free boundaries. Journal of computational physics, 39(1), pp. 201-225.
Homsy, G. M. (1987). Viscous fingering in porous media. Ann. Rev. Fluid Mech., pp. 271-311.
Horgue, P., Augier, F., Duru, P., Prat, M., & Quintard, M. (2013). Experimental and numerical study of two-phase flows in arrays of cylinders. Chemical Engineering Science, 102, pp. 335-345.
Hugaboom, D., & Powers, S. (2002). Recovery of coal tar and creosote from porous media: the influence of wettability. Ground Water Monitoring and Remediation, Vol. 22, pp. 83-90.
Jha, B., Cueto-Felgueroso, L., & Juanes, R. (2011). Fluid Mixing from Viscous Fingering. American Physical Society, p. 194502.
LangerS.J. (1980). Instabilities and pattern formation in crystal growth. Reviews of Modern Physics, 52(1), p. 1.
Leclerc, D. F., & Neale, G. H. (1988). Monte Carlo simulations of radial displacement of oil from a wetted porous medium: fractals, viscous fingering and invasion percolation. J. Phys. A: Math. Gen. 21, pp. 2979-2994.
LewisJ.D. ( 1950). The instability of liquid surfaces when accelerated in a direction perpendicular to their planes. II. Proc. R. Soc. Lond. A,, 202(1068), pp. 81-96.
Lin, K. Y. (2009). The influence of processing parameters on fingering formation in fluid‐assisted injection‐molded disks. Polymer Engineering & Science, 49(11), pp. 2257-2263.
Lins, T. F. (2017). Dynamics of Time Dependent Immiscible Injection Flows in Porous Media. Thesis of degree of master of University of Calgary.
Martyushev, L., & Birzina, A. (2008). Specific features of the loss of stabilityduring radial displacement of fluid in theHele–Shaw cell. Journal of Physic, p. 045201.
Mohammad Mirzadeh and Martin Z. Bazant. (2017). Electrokinetic Control of Viscous Fingering. Physical review letters, pp.119.
Mukherjee, P. P., Kang, Q., & Wang, C. Y. (2011). Pore-scale modeling of two-phase transport in polymer electrolyte fuel cells—progress and perspective. Energy & Environmental Science, 4(2), pp. 346-369.
Paterson, L. (1981). Radial fingering in a Hele Shaw cell. Journal of Fluid Mechanics, 113, pp. 513-529.
Pennell, K. D., Jin, M., Abriola, L. M., & Pope, G. A. (1994). Surfactant enhanced remediation of soil columns contaminated by residual tetrachloroethylene. Journal of Contaminant Hydrology, 16(1), pp. 35-53.
Philip, J. R. (1970). Flow in porous media. Annual Review of Fluid Mechanics, 2(1), pp. 177-204.
Pihler-Puzović, D., Illien, P., Heil, M., & Juel, A. (2012). Suppression of complex fingerlike patterns at the interface between air and a viscous fluid by elastic membranes. Physical review letters, 108(7), p. 074502.
Rauseo, S. N., Barnes Jr, P. D., & Maher, J. V. (無日期). Development of radial fingering patterns. Physical Review A, 35(3), 1245.
Reis, L., & J, A. M. (2011). Controlling fingering instabilities in nonflat Hele-Shaw geometries. Physical Review E, p. 066313.
Sader, J. E., Chan, D. Y., & Hughes, B. D. (1994). Non-Newtonian effects on immiscible viscous fingering in a radial Hele-Shaw cell. Physical Review E, Vol.49, pp. 420-432.
Saffman, P. G., & Taylor, G. (1958, June). The penetration of a fluid into a porous medium or Hele-Shaw cell containing a more viscous liquid. In Proceedings of the Royal Society of London A: Mathematical, Physical and Engineering Sciences(Vol. 245,No. 1242), pp. 312-329.
Simjoo, M., Rezaei, T., Andrianov, A., Zitha, P. L., & Zitha, P. (2013). Foam stability in the presence of oil: effect of surfactant concentration and oil type. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 438, pp. 148-158. (2013). Foam stability in the presence of oil: effect of surfactant concentration and oil type. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 438, pp. 148-158.
Than, P., Preziosi, L., Josephl, D. D., & Arney, M. (1988). Measurement of interfacial tension between immiscible liquids with the spinning road tensiometer. Journal of Colloid and Interface Science, Vol. 124, pp. 552-559.
Trojer, M., Szulczewski, M. L., & Juanes, R. (2015). Stabilizating fluid-fluid displacements in porous media through wettability alteration. Physic Review Application, vol. 3 , p. 054008.
Wang, Y., Zhang, C., Wei, N., Oostrom, M., Wietsma, T. W., & Li, X. (2012). Experimental study of crossover from capillary to viscous fingering for supercritical CO2−water displacement in a homogeneous pore network. Environmental Science and Technology, pp. 212-218.
Young, T. (1805). An Essay on the Cohesion of Fluids. Philosophical Transactions of the Royal Society of London, pp. 65-87.
Zhao, B., MacMinn, C. W., & Juanes, R. (2016). Wettability control on multiphase flow in patterned microfluidics. PNAS, vol. 113, pp. 10251-10256.
林再興. (2004). 石油採收技術與蘊藏量估算. 科學發展月刊,382, 頁 18-23.
林怡萱. (2019). 以計算流體力學模擬徑向多孔介質指形流: 流率與濕潤性的交互作用. 國立中央大學碩士論文.
林鴻諭. (2016). 利用異質孔徑界面增強多孔介質內流體驅替效果之研究. 國立中央大學碩士論文.
邱瑞祥. (2017). 時變流率對多孔介質指形的影響. 國立中央大學碩士論文.
|