Page 512 - Enhanced Oil Recovery in Shale and Tight Reservoirs
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476 References
Al-Bazali, T., 2013. A novel experimental technique to monitor the time-dependent water
and ions uptake when shale interacts with aqueous solutions. Rock Mechanics and
Rock Engineering 46, 1145e1156.
Al-Bazali, T., Zhang, J.G., Chenevert, M.E., Sharma, M.E., 2007. Factors controlling the
compressive strength and acoustic properties of shales when interacting with water-
based fluids. International Journal of Rock Mechanics and Mining Sciences 45 (5),
729e738, 2008.
Al-Yami, A.M., Gomez, F.A., AlHamed, K.I., Al-Buali, M.H., 2013. A successful field
application of a new chemical treatment in a fluid blocked well in Saudi Arabia. In:
Paper SPE 168086 Presented at the SPE Saudi Arabia Section Technical Symposium
and Exhibition Held in Al-Khobar, Saudi Arabia, 19e22 May.
Alhammadi, A.M., AlRatrout, A., Singh, K., Bijeljic, B., Blunt, M.J., 2017. In situ char-
acterization of mixed-wettability in a reservoir rock at subsurface conditions. Scientific
Reports 7, 10753e10761.
Alharthy, N., Teklu, T., Kazemi, H., Graves, R., Hawthorne, S., Braunberger, J.,
Kurtoglu, B., 2015. Enhanced oil recovery in liquid-rich shale reservoirs: laboratory to
field. In: Paper SPE 175034 Presented at the SPE Annual Technical Conference and
Exhibition Held in Houston, Texas, USA, 28e30 September.
Altawati, F.S., 2016. An Experimental Study of the Effect of Water Saturation on Cyclic N 2
and CO 2 Injection in Shale Oil Reservoirs. Master’s thesis. Texas Tech University,
Lubbock, Texas, USA.
Alvarez, J.O., Neog, A., Jais, A., Schechter, D.S., 2014. Impact of surfactants for wettability
alteration in stimulation fluids and the potential for surfactant EOR in unconventional
liquid reservoirs. In: Paper SPE 169001 Presented at the SPE Unconventional Re-
sources Conference e USA, The Woodlands, Texas, USA, 1e3 April.
Alvarez, J.O., Schechter, D.S., 2017. Wettability alteration and spontaneous imbibition in
unconventional liquid reservoirs by surfactant additives. SPE Reservoir Evaluation and
Engineering 20 (01), 107e117.
Alvarez, J.O., Saputra, I.W.R., Schechter, D.S., December 2018. The impact of surfactant
imbibition and adsorption for improving oil recovery in the Wolfcamp and Eagle Ford
reservoirs. SPE Journal 2103e2117.
Amott, E., 1959. Observations relating to the wettability of porous rock. Transactions of the
American Institute of Mining, Metallurgical and Petroleum Engineers, Incorporated
(AIME) 216, 156e162.
Anderson, W.G., 1986. Wettability literature survey part 2: wettability measurement.
Journal of Petroleum Technology 38 (11), 1246e1262.
Anderson, W.G., 1987. Wettability literature survey-part 5: the effects of wettability on
relative permeability. Journal of Petroleum Technology 39 (11), 1453e1468.
Andrew, M., Bijeljic, B., Blunt, M.J., 2014. Pore-scale contact angle measurements at
reservoir conditions using X-ray microtomography. Advances in Water Resources 68,
24e31.
Appel, M., 2004. Nuclear magnetic resonance and formation porosity. Petrophysics 45 (03),
296e307.
Artun, E., Ertekin, T., Watson, R., Miller, B., 2011. Performance evaluation of cyclic
pressure pulsing in a depleted, naturally fractured reservoir with stripperwell production.
Petroleum Science and Technology 29, 953e965.
Asadi, M., Woodroof, R.A., Himes, R.E., May 2008. Comparative study of flowback
analysis using polymer concentrations and fracturing-fluid tracer methods: a field study.
SPE Production and Operations 147e157.
Ashoori, S., Balavi, A., 2014. An investigation of asphaltene precipitation during natural
production and the CO 2 injection process. Petroleum Science and Technology 32 (11),
1283e1290.

