Journal of Industrial and Engineering Chemistry, Vol.72, 133-143, April, 2019
A 2-D simulation study on CO2 soluble surfactant for foam enhanced oil recovery
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This paper probes the transport of CO2 soluble surfactant for foaming in porous media. We numerically investigate the effect of surfactant partitioning between the aqueous phase and the gaseous phase on foam transport for subsurface applications when the surfactant is injected in the CO2 phase. A 2-D reservoir simulation is developed to quantify the effect of surfactant partition coefficient on the displacement conformance and CO2 sweep efficiency. A texture-implicit local-equilibrium foam model is embedded to describe how the partitioning of surfactant between water and CO2 affects the CO2 foam mobility control when surfactant is injected in the CO2 phase. We conclude that when surfactant has approximately equal affinity to both the CO2 and the water, the transport of surfactant is in line with the gas propagation and therefore the sweep efficiency is maximized. Too high affinity to water (small partition coefficient) results in surfactant retardation whereas too high affinity to CO2 (large partition coefficient) leads to weak foam and insufficient mobility reduction. This work sheds light upon the design of water-alternating-gas-plus-surfactant-in-gas (WAG + S) process to improve the conventional foam process with surfactant-alternating-gas (SAG) injection mode during which significant amount of
surfactant could possibly drain down by gravity before CO2 slugs catch up to generate foam in situ the reservoir.
Keywords:Nonionic surfactant;Partition coefficient;CO2;Foam;Gas breakthrough;Mobility control;Enhanced oil recovery (EOR);Foam simulation
- Alvarado V, Manrique E, Energies, 3(9), 1529 (2010)
- Lake L, Johns R, Rossen WR, Pope G, Soc. Pet. Eng. (2014).
- Franklin MO, Theory of Gas Injection Processes, Tie-Line Publications, Copenhagen, Denmark, 2017.
- Kuuskraa VA, Godec ML, Dipietro P, Energy Procedia, 37, 6854 (2013)
- Hussain D, Dzombak DA, Jaramillo P, Lowry GV, Int. J. Greenh. Gas Control, 16, 129 (2013)
- Jaramillo P, Griffin WM, McCoy ST, Environ. Sci. Technol., 43(21), 8027 (2009)
- Zeng Y, A Multiscale Study of Foam, Rice University, 6100 Main St, Houston, TX, 2017 77005.
- Kovscek AR, Radke CJ, Foams Fundamentals and Applications in the Petroleum Industry, vol. 242, American Chemical Society, 1994.
- Kam SI, Rossen W, SPE J., 8(04), 417 (2003)
- Conn CA, Ma K, Hirasaki GJ, Biswal SL, Lab Chip, 14(20), 3968 (2014)
- Li RF, Yan W, Liu S, Hirasaki G, Miller CA, SPE J., 15(04), 928 (2010)
- Fernø MA, Hauge LP, Rognmo AU, Gauteplass J, Graue A, Geophys. Res. Lett., 42(18), 7414 (2015)
- Fernø MA, Eide O, Steinsbø M, Langlo SAW, Christophersen A, Skibenes A, Ydstebø T, Graue A, J. Pet. Sci. Eng., 135, 442 (2015)
- Singh R, Mohanty KK, Fuel, 197, 58 (2017)
- Xiao S, Zeng Y, Vavra ED, He P, Puerto MC, Hirasaki GJ, Biswal SL, Langmuir, 34(3), 739 (2017)
- Dong P, Puerto M, Jian G, Ma K, Mateen K, Ren G, Bourdarot G, Morel D, Bourrel M, Biswal SL, et al., SPE J. (2018).
- Kulkarni MM, Rao DN, J. Pet. Sci. Eng., 48(1-2), 1 (2005)
- Sedaralit MF, Darman NB, Tewari RD, Bahrim RZK, Abdul Hamid P, Mohd Shafian SR, Abdul Manap AA, Enhancing the Efficiency of Immiscible Water Alternating Gas (WAG) Injection in a Matured, High Temperature and High CO2 Solution Gas Reservoir, 2013 (165303-MS).
- Sohrabi M, Tehrani DH, Danesh A, Henderson GD, SPE J., 9(03), 290 (2004)
- Rogers JD, Grigg RB, SPE Reservior Eval. Eng., 4(05), 375 (2001)
- Han LY, Gu YG, Energy Fuels, 28(11), 6811 (2014)
- Lei H, Yang SL, Zu LH, Wang ZL, Li Y, Energy Fuels, 30(11), 8922 (2016)
- Blaker T, Aarra MG, Skauge A, Rasmussen L, Celius HK, Martinsen HA, Vassenden F, SPE Reservior Eval. Eng., 5(04), 317 (2002)
- Falls AH, Lawson JB, Hirasaki GJ, J. Pet. Technol., 40(01), 95 (1988)
- Mannhardt K, Svorstøl I, J. Pet. Sci. Eng., 23(3-4), 189 (1999)
- Cui L, Ma K, Puerto M, Abdala AA, Tanakov I, Lu LJ, Chen Y, Elhag A, Johnston KP, Biswal SL, et al., SPE J. (2016).
- Ren G, Nguyen QP, Pet. Sci. (2017).
- Kahrobaei S, Vincent-Bonnieu S, Farajzadeh R, Sci. Rep., 7(1) (2017)
- Hirasaki GJ, Miller CA, Puerto M, et al., Recent Advances in Surfactant EOR, SPE Annual Technical Conference and Exhibition, 2008 (SPE-115386-MS).
- Hirasaki GJ, Miller CA, Szafranski R, Lawson JB, Akiya N, Surfactant/Foam Process for Aquifer Remediation, 1997 18.21 February, (SPE-37257-MS).
- Alzobaidi S, Da C, Tran V, Prodanovic M, Johnston KP, J. Colloid Interface Sci., 488, 79 (2017)
- Al Sumaiti A, Shaik AR, Mathew ES, Al Ameri W, Energy Fuels, 31(5), 4637 (2017)
- Farajzadeh R, Andrianov A, Krastev R, Hirasaki GJ, Rossen WR, Adv. Colloid Interface Sci., 183-184, 1 (2012)
- Zeng Y, Farajzadeh R, Eftekhari AA, Vincent-Bonnieu S, Muthuswamy A, Rossen WR, Hirasaki GJ, Biswal SL, Langmuir (2016).
- Zeng Y, Bahrim RZK, Bonnieu SV, Groenenboom J, Shafian SRM, Manap AAA, Tewari RD, Biswal SL, Offshore Technology Conference Asia, 20.232018 (OTC-28229-MS).
- Kahrobaei S, Li K, Vincent-Bonnieu S, Farajzadeh R, AIChE J., 64(2), 758 (2018)
- Mannhardt K, Novosad JJ, Jha KNN, J. Can. Pet. Technol., 33(02) (1994)
- Chen YS, Elhag AS, Cui LY, Worthen AJ, Reddy PP, Noguera JA, Ou AM, Ma K, Puerto M, Hirasaki GJ, Nguyen QP, Biswal SL, Johnston KP, Ind. Eng. Chem. Res., 54(16), 4252 (2015)
- Chorro M, Kamenka N, Faucompre B, Partyka S, Lindheimer M, Zana R, Colloids Surf. A: Physicochem. Eng. Asp., 110(3), 249 (1996)
- Jian GQ, Puerto MC, Wehowsky A, Dong PF, Johnston KP, Hirasaki GJ, Biswal SL, Langmuir, 32(40), 10244 (2016)
- Jian GQ, Puerto M, Wehowsky A, Miller C, Hirasaki GJ, Biswal SL, J. Colloid Interface Sci., 513, 684 (2018)
- Chen Y, Elhag AS, Poon BM, Cui L, Ma K, Liao SY, Reddy PP, Worthen AJ, Hirasaki GJ, Nguyen QP, et al., SPE J., 19(02), 249 (2014)
- Elhag AS, Chen Y, Chen H, Reddy PP, Cui L, Worthen AJ, Ma K, Hirasaki GJ, Nguyen QP, Biswal SL, et al., Switchable AmineSurfactants for Stable C/Brine Foams in High Temperature, 2014 (SPE -169041-MS).
- Cui L, Ma K, Abdala AA, Lu LJ, Tanakov I, Biswal SL, Hirasaki GJ, Adsorption of a Switchable Cationic Surfactant on Natural Carbonate Minerals, 2014 (SPE -169040-MS).
- Xing D, Wei B, McLendon WJ, Enick RM, McNulty S, Trickett K, Mohamed A, Cummings S, Eastoe J, Rogers S, et al., SPE J., 17(04), 1172 (2012)
- Zhang Y, Zhang L, Wang YT, Wang M, Wang YQ, Ren SR, Chem. Eng. Res. Des., 94, 624 (2015)
- Wang Y, Zhang Y, Liu Y, Zhang L, Ren S, Lu J, Wang X, Fan N, J. Pet. Sci. Eng., 154, 234 (2017)
- Zhang Y, Wang Y, Xue F, Wang Y, Ren B, Zhang L, Ren S, J. Pet. Sci. Eng., 133, 838 (2015)
- Adkins SS, Chen X, Chan I, Torino E, Nguyen QP, Sanders AW, Johnston KP, Langmuir, 26(8) (2010)
- Shan D, Ma K, Rossen WR, Optimal Injection Strategies for Foam IOR, 2002 (SPE-75180-MS).
- Zeng Y, Ma K, Farajzadeh R, Puerto M, Biswal SL, Hirasaki GJ, Transp. Porous Media (2016).
- Ashoori E, van der Heijden T, Rossen WR, Fractional Flow Theory of Foam Displacements With Oil, 2009 (SPE -121579-MS).
- Ren GW, Sanders AW, Nguyen QP, J. Supercrit. Fluids, 91, 77 (2014)
- Lee CT, Psathas PA, Johnston KP, deGrazia J, Randolph TW, Langmuir, 15(20), 6781 (1999)
- Regtien JMM, Por GJA, van Stiphout MT, van der Vlugt FF, Interactive Reservoir Simulation, 1995 (SPE -29146-MS).
- Eftekhari AA, Farajzadeh R, Sci. Rep., 7, 43870 (2017)
- Ma K, Ren G, Mateen K, Morel D, Cordelier P, SPE J., 20(03), 453 (2015)
- Lotfollahi M, Farajzadeh R, Delshad M, Varavei A, Rossen WR, J. Nat. Gas Sci. Eng., 31, 184 (2016)
- Ma K, Lopez-Salinas JL, Puerto MC, Miller CA, Biswal SL, Hirasaki GJ, Energy Fuels, 27(5), 2363 (2013)
- Zeng Yongchao, Muthuswamy Aarthi, Ma Kun, Wang Le, Farajzadeh Rouhi, Puerto Maura, Vincent-Bonnieu Sebastien, Eftekhari Ali Akbar, Wang Ying, Da Chang, Joyce Jeffrey C., Biswal Sibani L., Hirasaki George J., Ind. Eng. Chem. Res., 55(28), 7819 (2016)
- Apaydin OG, Kovscek AR, Transient Foam Flow in Homogeneous Porous Media: Surfactant Concentration and Capillary End Effects, 2000 (SPE -59286-MS).
- Geraud B, Jones SA, Cantat I, Dollet B, Meheust Y, Water Resour. Res., 52(2), 773 (2016)
- Amirmoshiri M, Zeng Y, Chen Z, Singer PM, Puerto MC, Grier H, Bahrim RZK, Vincent-Bonnieu S, Farajzadeh R, Biswal SL, Hirasaki GJ, Energy Fuels, 32(11), 11177 (2018)
- Vavra ED, Zeng Y, Xiao S, Hirasaki GJ, Biswal SL, J. Visualized Exp. (131) (2018).
- Corey AT, Prod. Mon. (19), 38 (1954).
- Abdallah W, Buckley JS, Carnegie A, Edwards J, Herold B, Fordham E, Graue A, Habashy T, Seleznev N, Signer C, et al., Technology, 38(1125-11), 268 (1986)
- Hirasaki G, Wettability Fundamentals and Surface Forces, vol. 6(1991) SPE Formation Evaluation Issue 02, June (SPE-17367-PA).
- Song J, Zeng YC, Wang L, Duan XD, Puerto M, Chapman WG, Biswal SL, Hirasaki GJ, J. Colloid Interface Sci., 506, 169 (2017)
- Lescure BM, Claridge EL, CO2 Foam Flooding Performance vs. Rock Wettability, 1986 (SPE-15445-MS).