Page 84 - Formation Damage during Improved Oil Recovery Fundamentals and Applications
P. 84
66 David A. Wood and Bin Yuan
Seccombe, J., Lager, A., Jerauld, G., Jhaveri, B., Buikema, T., Bassler, S., et al., 2010.
Demonstration of low-salinity EOR at inter well scale, Endicott Field, Alaska. In:
Proceedings of the SPE Improved Oil Recovery Symposium, Tulsa, OK, USA,
24 28 April, SPE129692. 12 pages ISBN:978-1-55563-289.
Shariatpanahi, S.F., Strand, S., Austad, T., 2011. Initial wetting properties of carbonate oil
reservoirs: effect of the temperature and presence of sulfate in formation water.
Energy Fuels 25 (7), 3021 3028.
Shiran, B.S., Skauge, A., 2013. Enhanced oil recovery (EOR) by combined low salinity
water/polymer flooding. Energy Fuels 27 (3), 1223 1235.
Skauge, A., Ghorbani, Z., Delshad, M., 2011. Simulation of combined low salinity brine
and surfactant flooding. 16th European Symposium on Improved Oil Recovery
Cambridge, UK, 12 14 April 2011, 13 pages.
Skrettingland, K., Holt, T., Tweheyo, M.T., Skjevrak, I., 2011. Snorre low salinity water
injection - Core flooding experiments and single well field pilot. Paper SPE129877
presented at the 2010 SPE Improved oil recovery symposium 22 26 April.
Song, W., Kovscek, A., 2016. Direct visualization of pore-scale fines migration and forma-
tion damage during low-salinity waterflooding. J. Nat. Gas. Sci. Eng. 34, 1276 1283.
Tang, G., Morrow, N.R., 1999. Influence of brine composition and fines migration on
crude oil/brine/rock interactions and oil recovery. J. Pet. Sci. Eng. 24 (2), 99 111.
Available from: http://dx.doi.org/10.1016/S0920-4105(99)00034-0.
Thanh, L.D., Sprik, R., 2015. Zeta potential measurement using streaming potential in
porous media. VNU J. Sci: Mat Phys 31 (4), 56 65.
Vledder, P., Fonseca, J.C., Wells, T., Gonzalez, I. and Ligthelm, D., 2010. Low salinity
water flooding: Proof of wettability alteration on a field wide scale. Paper SPE
129564 presented at the 2010 SPE Improved Oil Recovery Symposium, 24 28
April. 10 pages.
Webb, K.J., Black, C.J.J., Al-Ajeel, H., 2004. Low salinity oil recovery—log-inject-log. In:
Proceedings of the SPE/DOE Symposium on Improved Oil Recovery, Tulsa, OK, USA,
17 21 April, SPE89379-MS. Available from: https://doi.org/10.2118/89379-ms.
Welge, H.J., 1952. A Simplified method for computing oil recovery by gas or water drive.
J. Pet. Technol. 4 (04), 91 98.
Wu, Y., Bai, B., 2009. Efficient simulation of low-salinity waterflooding in porous and
fractured reservoirs. In: Proceedings of the 2009 SPE Reservoir Simulation
Symposium, The Woodlands, TX, USA, 2 4 February, SPE118830. Available from:
https://doi.org/10.2118/118830-ms.
Xie, Q., Liu, Y., Wu, J., Liu, Q., 2014. Ions tuning water flooding experiments and inter-
pretation by thermodynamics of wettability. J. Pet. Sci. Eng. 124, 350 358.
Yildiz, H.O., Morrow, N.R., 1996. Effect of brine composition on recovery waterflood-
ing of Moutray crude oil by. J. Pet. Sci. Eng. 14, 159 168.
Yousef, A.A., Al-Saleh, S., Al-kaabi, A., Al-Jawfi, M., 2010. Laboratory investigation of
novel oil recovery method for carbonate reservoirs. In: Proceedings of the Canadian
Unconventional Reservoirs & International Petroleum Conference, Calgary, Alberta,
Canada, 19 21 October, CSUG/SPE137634. Available from: https://doi.org/
10.2118/137634-PA.
Yousef, A.A.; Al-Saleh, S.; Al-Jawfi, M.S. 2012. The impact of the injection water chem-
istry on oil recovery from carbonate reservoirs. In Proceedings of the SPE EOR
Conference at Oil and Gas West Asia, Muscat, Oman, 16 18 April 2012.
Yuan, B., 2017a. Modeling Nanofluids Utilization to Control Fines Migration. The
University of Oklahoma, Norman, Oklahoma.
Yuan, B., Moghanloo, 2017b. Analytical modeling improved well performance by nano-
fluid pre-flush. Fuel 202, 380 394.
Yuan, B., Moghanloo, R.G., 2016. Analytical solution of nanoparticles utilization to
reduce fines migration in porous medium. SPE. J. 21 (06), 2317 2332.