Page 32 - Hybrid Enhanced Oil Recovery Using Smart Waterflooding
P. 32
24 Hybrid Enhanced Oil Recovery using Smart Waterflooding
exhibition and conference, Abu Dhabi, UAE, 9e12 November. and conference, Abu Dhabi, UAE, 10e13 November. https://
https://doi.org/10.2118/177590-MS. doi.org/10.2118/171794-MS.
Callegaro, C., Franco, M., Bartosek, M., Buscaglia, R., Seccombe, J., Lager, A., Gary, J., Jhaveri, B., Todd, B., Bassler, S.,
Visintin, R., Hartvig, S. K., et al. (2014). Single well chemi- et al. (2010). Demonstration of low-salinity EOR at inter-
cal tracer tests to assess low salinity water and surfactant well scale, Endicott field, Alaska. In Paper presented at the
EOR processes in West Africa. In Paper presented at the Inter- SPE improved oil recovery symposium, Tulsa, Oklahoma, USA,
national petroleum technology conference, Kuala Lumpur, 24e28 April. https://doi.org/10.2118/129692-MS.
Malaysia, 10e12 December. https://doi.org/10.2523/IPTC- Seccombe, J. C., Lager, A., Webb, K. J., Jerauld, G., & Fueg, E.
17951-MS. (2008). Improving waterflood recovery: LoSalTM EOR field
Hallenbeck, L. D., Sylte, J. E., Ebbs, D. J., & Thomas, L. K. evaluation. In Paper presented at the SPE symposium on
(1991). Implementation of the Ekofisk field waterflood. improved oil recovery, Tulsa, Oklahoma, USA, 20e23 April.
SPE Formation Evaluation, 6(3), 284e290. https://doi.org/ https://doi.org/10.2118/113480-MS.
10.2118/19838-PA. Shehata, A. M., & Nasr-El-Din, H. A. (2017). Laboratory inves-
Huang, Y. C., Fowkes, F. M., Lloyd, T. B., & Sanders, N. D. tigations to determine the effect of connate-water composi-
(1991). Adsorption of calcium ions from calcium chloride tion on low-salinity waterflooding in sandstone reservoirs.
solutions onto calcium carbonate particles. Langmuir, 7(8), SPE Reservoir Evaluation and Engineering, 20(01), 59e76.
1742e1748. https://doi.org/10.1021/la00056a028. https://doi.org/10.2118/171690-PA.
Jadhunandan, P. P., & Morrow, N. R. (1995). Effect of wetta- Skrettingland, K., Holt, T., Tweheyo, M. T., & Skjevrak, I.
bility on waterflood recovery for crude-oil/brine/rock (2011). Snorre low-salinity-water injection–coreflooding
systems. SPE Reservoir Engineering, 10(1), 40e46. https:// experiments and single-well field pilot. SPE Reservoir Evalu-
doi.org/10.2118/22597-PA. ation and Engineering, 14(02), 182e192. https://doi.org/
Lager, A., Webb, K. J., Black, C. J. J., Singleton, M., & 10.2118/129877-PA.
Sorbie, K. S. (2008a). Low salinity oil recovery e an exper- Strand, S., Høgnesen, E. J., & Austad, T. (2006). Wettability
imental investigation1. Petrophysics, 49(1), 28e38. https:// alteration of carbonatesdeffects of potential determining
2
doi.org/10.2118/93903-MS. ions (Ca 2þ and SO 4 ) and temperature. Colloids and
Lager, A., Webb, K. J., Collins, I. R., & Richmond, D. M. Surfaces A: Physicochemical and Engineering Aspects, 275(1),
(2008b). LoSal enhanced oil recovery: Evidence of 110. https://doi.org/10.1016/j.colsurfa.2005.10.061.
enhanced oil recovery at the reservoir scale. In Paper pre- Tang, G. Q., & Morrow, N. R. (1997). Salinity, temperature, oil
sented at the SPE symposium on improved oil recovery, Tulsa, composition, and oil recovery by waterflooding. SPE Reser-
Oklahoma, USA, 20e23 April. https://doi.org/10.2118/ voir Engineering, 12(04), 269e276. https://doi.org/
113976-MS. 10.2118/36680-PA.
Ligthelm, D. J., Gronsveld, J., Hofman, J., Brussee, N., Tang, G.-Q., & Morrow, N. R. (1999). Influence of brine
Marcelis, F., & van der Linde, H. (2009). Novel waterflood- composition and fines migration on crude oil/brine/rock
ing strategy by manipulation of injection brine composi- interactions and oil recovery. Journal of Petroleum Science
tion. In Paper presented at the EUROPEC/EAGE conference and Engineering, 24(2), 99e111. https://doi.org/10.1016/
and exhibition, Amsterdam, Netherlands, 8e11 June. https:// S0920-4105(99)00034-0.
doi.org/10.2118/119835-MS. Webb, K. J., Black, C. J. J., & Al-Ajeel, H. (2003). Low salinity oil
McGuire, P. L., Chatham, J. R., Paskvan, F. K., Sommer, D. M., & recovery - log-inject-log. In Paper presented at the Middle East
Carini, F. H. (2005). Low salinity oil recovery: An exciting oil show, Bahrain, 9e12 June. https://doi.org/10.2118/
new EOR opportunity for Alaska’s North slope. In Paper pre- 81460-MS.
sented at the SPE Western Regional Meeting, Irvine, California, Yildiz, H. O., & Morrow, N. R. (1996). Effect of brine
USA, 30 Marche1April. https://doi.org/10.2118/93903-MS. composition on recovery of Moutray crude oil by
Morrow, N. R. (1990). Wettability and its effect on oil recovery. waterflooding. Journal of Petroleum Science and Engineering,
Journal of Petroleum Technology, 42(12), 1476e1484. https:// 14(3), 159e168. https://doi.org/10.1016/0920-4105(95)
doi.org/10.2118/21621-PA. 00041-0.
Nasralla, R. A., & Nasr-El-Din, H. A. (2014). Double-layer Yousef, A. A., Al-Saleh, S., & Al-Jawfi, M. S. (2012a).
expansion: Is it a primary mechanism of improved oil Improved/enhanced oil recovery from carbonate reser-
recovery by low-salinity waterflooding? SPE Reservoir Evalu- voirs by tuning injection water salinity and ionic content.
ation and Engineering, 17(01), 49e59. https://doi.org/ In Paper presented at the SPE improved oil recovery symposium,
10.2118/154334-PA. Tulsa, Oklahoma, USA, 14e18 April. https://doi.org/
RezaeiDoust, A., Puntervold, T., & Austad, T. (2011). Chemical 10.2118/154076-MS.
verification of the EOR mechanism by using low saline/ Yousef, A. A., Al-Saleh, S. H., Al-Kaabi, A., & Al-Jawfi,M.S.
smart water in sandstone. Energy and Fuels, 25(5), (2011). Laboratory investigation of the impact of
2151e2162. https://doi.org/10.1021/ef200215y. injection-water salinity and ionic content on oil recovery
Rotondi, M., Callegaro, C., Franco, M., & Bartosek, M. (2014). from carbonate reservoirs. SPE Reservoir Evaluation and
Low salinity water injection: Eni’s experience. In Paper pre- Engineering, 14(5), 578e593. https://doi.org/10.2118/
sented at the Abu Dhabi international petroleum exhibition 137634-PA.