Page 534 - Enhanced Oil Recovery in Shale and Tight Reservoirs
P. 534
498 References
Petijohn, F.J., 1957. Sedimentary Rocks, second ed. Harper & Row Publishers, New York.
Phillips, Z.D., Halverson, R.J., Strauss, S.R., Layman II, J.M., Green, T.W., 2009. A case
study in the Bakken formation: changes to hydraulic fracture stimulation treatments
result in improved oil production and reduced treatment costs. In: Paper SPE 108045
Presented at the Rocky Mountain Oil & Gas Technology Symposium Held in Denver,
Colorado, USA, 16e18 April.
Potapenko, D.I., Tinkham, S.K., Lecerf, B., Fredd, C.N., Samuelson, M.L., Gillard, M.R.,
Le Calvez, J.H., Daniels, J.L., 2009. Barnett shale refracture stimulations using a novel
diversion technique. In: Paper SPE 119636 Presented at the SPE Hydraulic Fracturing
Technology Conference Held in Woodlands, Texas, USA, 19e21 January.
Prasad, R.S., Slater, J.A., 1986. High-Pressure combustion tube tests. In: Paper SPE 14919
Presented at the SPE Enhanced Oil Recovery Symposium Held in Tulsa, Oklahoma,
USA, 20e23 April. https://doi.org/10.2118/14919-MS.
Prats, M., 1982. Thermal Recovery. SPE Monograph, vol. 7. American Institute of Mining,
Mettallurgical, and Petroleum Engineers, Inc., Dallas, Texas, USA.
Pu, W.F., Liu, P.G., Li, Y.B., Jin, F.Y., Liu, Z.Z., 2015. Thermal characteristics and
combustion kinetics analysis of heavy crude oil catalyzed by metallic additives. Industrial
and Engineering Chemistry Research 54 (46), 11525e11533.
Qi, C.W., 2015. Hydraulically fractured zone is actually “dead oil zone” in tight reservoir.
Inner Mongolian Petrochemical 17, 146e147.
Raghavan, R., Chin, L.Y., 2002. Productivity changes in reservoirs with stress-dependent
permeability. In: Paper SPE 77535 Presented at the SPE Annual Technical Confer-
ence and Exhibition, San Antonio, Texas, USA, 29 September-2 October. https://doi.
org/10.2118/77535-MS.
Rahman, M.K., Hossain, M.M., Rahman, S.S., 2002. A shear-dilation-based model for
evaluation of hydraulically stimulated naturally fractured reservoirs. International Journal
for Numerical and Analytical Methods in Geomechanics 26 (5), 469e497.
Rai, R.R., 2003. Parametric Study of Relative Permeability Effects on Gas-Condensate
Core Floods and Wells. Masters’ thesis, University of Texas at Austin, Austin, Texas,
USA.
Rai, S.K., Bera, A., Mandal, A., 2015. Modeling of surfactant and surfactantepolymer
flooding for enhanced oil recovery using STARS (CMG) software. Journal of Petro-
leum Exploration and Production Technology 5 (1), 1e11.
Rapoport, L.A., 1955. Scaling laws for use in design and operation of water-oil flow models.
Transactions of the American Institute of Mining, Metallurgical and Petroleum Engi-
neers, Incorporated (AIME) 204, 143e150.
Ren, S.R., Greaves, M., Rathbone, R.R., 1999. Oxidation kinetics of North sea light crude
oils at reservoir temperature. Trans IChemE 77, 385e394. Part A.
Rilian, N.A., Sumestry, M., Wahyuningsih, 2010. Surfactant stimulation to increase reserves
in carbonate reservoir “a case study in Semoga field”. In: Paper SPE 130060 Presented
at the SPE EUROPEC/EAGE Annual Conference and Exhibition Held in Barcelona,
Spain, 14e17 June.
Rodriguez, E., Comes, J., Trujillo, M., Belgrave, J.D.M., 2012. A framework for consol-
idating air injection experimental data. In: Paper SPE 152048 Presented at the SPE
Latin American and Caribbean Petroleum Engineering Conference Held in Mexico
City, Mexico, April 16e18.
Roshan, H., Ehsani, S., Marjo, C.E., Andersen, M.S., Acworth, R.I., 2015. Mechanisms of
water adsorption into partially saturated fractured shales: an experimental study. Fuel
159, 628e637.
Roshan, H., Al-Yaseri, A.Z., Sarmadivaleh, M., Iglauer, S., 2016. On wettability of shale
rocks. Journal of Colloid and Interface Science 475 (August), 104e111. https://doi.
org/10.1016/j.jcis.2016.04.041.

