[1]. Thomas F. B., Holowach N., Zhou X., Bennion D .B. and Bennion D. W., Miscible or Near Miscible Gas Injection-which is better? Hycal Energy Research Laboratories Ltd, SPE/DOE 27811, Presented in Ninth Symposium on Improved Oil Recovery held in USA, 17-20, Apr., 1994.
[2]. Sohrabi M., Tehrani D. H. and Al-Abri M., “Performance of near-miscible gas and SWAG injection in a mixed-wet core”, SCA2007-26, Presented at the International Symposium of the Society of Core Analysis held in Calgary, Canada, pp. 10-12, Sep., 2007.
[3]. Bardon C. and Longeron D., “Influence of Very Low Interfacial Tensions on Relative Permeability”, 53rd Annual Tech. Conf. and Exhib. SPE, Houston, TX, pp. 7609., 1978.
[4]. Fulcher R. A., Ertekin T. and Stahl C. D. “Effect of capillary number and its constituents on two-phase relative permeability”, JPT 37 (2), pp. 249–260, 1985.
[5]. Asar J. and Handy L. L., “Influence of interfacial tension on gas/oil relative permeability in a gas condensate system”, SPE Reserv. Eng. 3 (1), pp. 257, 1988
[6]. Schechter D. S. and Haynes J. M. “Relative permeabilities of a near critical binary fluid”, Transp. Porous Media 9 (3), pp. 241–260, 1992.
[7]. Henderson G. D., Danesh A., Tehrani D. H., Al-Shaidi S. and Peden J. M., “Measurement and correlation of gas condensate relative permeability by the steady-state method”, SPE Reserv. Eng. 1 (2), pp. 134–140, 1998.
[8]. Blom S. M. P., Hagoort J. and Soetekouw D. P. N., , “Relative permeability at near-critical conditions”, SPE J. 5 (2), 172–181, 2000.
[9]. Moore T. F., Slobod R. L., “The effect of viscosity and capillarity on the displacement of oil by water”, Prod. Mon. 20, pp. 20–30, 1956.
[10]. M.Al-Wahaibi C. A., Grattoni A. H., Muggeridge, “Drainage and imbibition relative permeabilities at near miscible conditions”, Journal of Petroleum Science and Engineering 53, 2006.
[11]. MacDougall S. R., Salino P. A. and Sorbie K. S., “The effect of interfacial tension upon gas–oil relative permeability measurements: interpretation using pore-scale models”, SPE Annual Tech Conf. and Exhib. SPE, San Antonio, TX, p. 38920, 1997.
[12]. Delclaud J., Rochon J., Nectoux A., “Investigations of gas/oil relative permeabilities: high-permeability oil reservoir application”, SPE Annual Tech. Conf. and Exhib. SPE, Dallas, pp. 16966, 1987.
[13]. Toth J., Bodi T. and Civan F., “Convenient Formulae for Determination of Relative Permeability from Unsteady-State Fluid Displacements in Core Plugs,” Journal of Petroleum Science and Engineering 36 (2002) 33-44 pp. 291-298, 1982.
[14]. Hussain F., SPE and Y.Cinar, SPE, University of New South Wales, and P.Bedrikrikovetsky, SPE, University of Adelaide, Comparison of methods for Drainage relative permeability Estimation from displacement tests, SPE 129678, 2010.
[15]. Welge H. J., A simplified method for computing recovery by gas or water drives, Trans. AIME, 195, 91, 1952.
[16]. Johnson E. F., Bossler D. P., and Naumann V. O., “Calculation of relative permeability from displacement experiments”, Trans. AIME, pp. 216,310, 1959.
[17]. Jones S. C. and Roszelle W. O., “Graphical techniques for determining relative permeability from displacement experiments”, J. Pet. Technol., 5, 807, 1978.
[18]. Li K., Shen P. and Qing T. A., “New Method for Calculating Oil-Water Relative Permeability with Consideration of Capillary Pressure”, Mechanics and Practice, 16(2), pp. 46-52, 1994
[19]. Kalbus J. and Christiansen R. L., “New Data reduction Developments for Relative Permeability Determination”, SPE 30799, ATC & Exhibition, Dallas USA, pp. 22-25, Oct., 1995.
[20]. Civan F. and Donaldson E. C., “Relative permeability from unsteady state displacements with capillary pressure included”, SPE Formation Evaluation 4(2), pp.189-193, 1989
[21]. Udegbunam E. O., “A fortran Program for Interpretation of Relative Permeability from Unsteady-State fluid Displacements with Capillary Pressure Included”, Computer & Geosciences, 17(10), pp. 1351-1357, 1991.
[22]. Archer J. S. and Wong S. W., “Use of a reservoir simulator to interpret laboratory water flood data”, SPE Journal 13(6), pp. 343-347, 1973.
[23]. Subbey S., Monfared H., Christie M. and Sambridge M. “Quantifying uncertainity in flow functions derived from SCAL data”, Transport in Porous Media 65, pp. 256-286, 2006.
[24]. Bui L. H., Tsau J. S. and Willhite G. P., “Laboratory investigations of CO2 near-miscible application in arbuckle reservoir”, SPE, 129710, 2010.
[25]. Hawkins J. M., Luffel D. L. and Harris T. G., “Capillary pressure model predicts distance to gas/water, oil/water contact”, Oil & Gas Journal, pp. 39-43, 1993.
[26]. Grattoni C. A. and Bidner .M. S., “History matching of unsteady state coreflloods for determining capillary pressure and relative permeabilities”, SPE. 21135, SP Latin American and Carribean Petroleum Engineering Conference, Rio de Janeiro, Brazil, 30 August-3 Sept. 1997.
[27]. Basbug B. and Karpyn Z. T., “Determination of a reletive permeability and capillary pressure curves using an automated history-maching approach”, SPE 117767, SPE Eastern Regional/AAPG Eastern Section Joint Meeting, pp. 11-15, Octo.r, Pittsburgh, PA, USA, 2008.