Modeling interaction between CO2, brine and chalk reservoir rock including temperature effect on petrophysical properties

Energy Geoscience - Tập 2 - Trang 337-344 - 2021
Hisham Ben Mahmud1, Walid Mohamed Mahmud2, Ali Al-Rubaye3
1Petroleum Engineering Department, Curtin University Malaysia, CDT 250, Miri, 98009, Malaysia
2Department of Petroleum Engineering, University of Tripoli, Tripoli, Libya
3Gudea Geoscience Group (GGSG), Thi Qar, Iraq

Tài liệu tham khảo

Aya, 1999, 269 Aycaguer, 2001, Reducing carbon dioxide emissions with enhanced oil recovery projects: a life cycle assessment approach, Energy Fuels, 15, 303, 10.1021/ef000258a Ben Mahmud, 2017, Analyze EOR potential of a mature oil reservoir using CO2, Int. J. Petrol. Petrochem. Eng., 3, 1 Bhatti, 2019, Assessing the application of miscible CO2 flooding in oil reservoirs: a case study from Pakistan, J Pet Explor Prod Technol, 9, 685, 10.1007/s13202-018-0504-x Biyanto, 2019, Optimization of operating conditions of CO2-enhanced gas recovery and carbon sequestration, J Pet Explor Prod Technol, 9, 2689, 10.1007/s13202-019-0669-y Eliebid, 2017, Effect of CO2 adsorption on enhanced natural gas recovery and sequestration in carbonate reservoirs, J. Nat. Gas Sci. Eng., 55, 575, 10.1016/j.jngse.2017.04.019 Elmabrouk, 2017, An overview of power plant CCS and CO2-EOR projects Ershadnia, 2020, CO₂ geological sequestration in heterogeneous binary media: effects of geological and operational conditions, Adv. Geo-Energy Res., 4, 392, 10.46690/ager.2020.04.05 Ershadnia, 2020, CO2 geological sequestration in heterogeneous binary media: effects of geological and operational conditions, Adv. Geo-Energy Res., 4, 392, 10.46690/ager.2020.04.05 Fakher, 2020, An experimental investigation of asphaltene stability in heavy crude oil during carbon dioxide injection, J Petrol Explor Prod Technol, 10, 919, 10.1007/s13202-019-00782-7 Ghani, 2015, Improved oil recovery using CO2 as an injection medium: a detailed analysis, J Pet Explor Prod Technol, 5, 241, 10.1007/s13202-014-0131-0 Ghedan, 2009, Global laboratory experience of CO2-EOR flooding Gunter, 1998, Large CO2 sinks: their role in the mitigation of greenhouse gases from an international, national (Canadian) and provincial (Alberta) perspective, Appl. Energy, 61, 209, 10.1016/S0306-2619(98)00042-7 Han, 2016, Effect of gravity segregation on CO2 sequestration and oil production during CO2 flooding, Appl. Energy, 161, 85, 10.1016/j.apenergy.2015.10.021 Izgec, 2005, CO2 injection in carbonates Izgec, 2006, Experimental and numerical modeling of direct injection of CO2 into carbonate formations Izgec, 2008, CO2 Injection into saline carbonate aquifer formations I: laboratory investigation, Transport Porous Media, 72, 1, 10.1007/s11242-007-9132-5 Jaber, 2017, Field-scale investigation of different miscible CO2-injection modes to improve oil recovery in a clastic highly heterogeneous reservoir, J Pet Explor Prod Technol, 7, 125, 10.1007/s13202-016-0255-5 Jackson, 2002, Ecosystem carbon loss with woody plant invasion of grasslands, Nature, 418, 623, 10.1038/nature00910 Khather, 2018 Khather, 2018, Experimental evaluation of carbonated brine-limestone interactions under reservoir conditions-emphasis on the effect of core scale heterogeneities, Int. J. Greenh. Gas Contr., 68, 128, 10.1016/j.ijggc.2017.11.002 Khather, 2019, An experimental study for carbonate reservoirs on the impact of CO2-EOR on petrophysics and oil recovery, Fuel, 235, 1019, 10.1016/j.fuel.2018.08.094 Korsnes, 2008, Enhanced chemical weakening of chalk due to injection of CO2 enriched water Lasaga, 1994, Chemical weathering rate laws and global geochemical cycles, Geochem. Cosmochim. Acta, 58, 2361, 10.1016/0016-7037(94)90016-7 Lashkarbolooki, 2017, Minimum miscibility pressure of CO2 and crude oil during CO2 injection in the reservoir, J. Supercrit. Fluids, 127, 121, 10.1016/j.supflu.2017.04.005 Li, 2020, Pore structure alteration induced by CO2–brine–rock interaction during CO2 energetic fracturing in tight oil reservoirs, J. Petrol. Sci. Eng., 107147, 10.1016/j.petrol.2020.107147 Li, 2020, CO2 solubility in brine in silica nanopores in relation to geological CO2 sequestration in tight formations: effect of salinity and pH, Chem. Eng. J., 127626 Li, 2020, Pore structure alteration induced by CO2–brine–rock interaction during CO2 energetic fracturing in tight oil reservoirs, J. Petrol. Sci. Eng., 191, 10.1016/j.petrol.2020.107147 Liro, 1992, Modelling the release of CO2 in the deep ocean, Energy Convers. Manag., 33, 667, 10.1016/0196-8904(92)90070-D Liteanu, 2013, The influence of water and supercritical CO2 on the failure behavior of chalk, Tectonophysics, 599, 157, 10.1016/j.tecto.2013.04.013 Ma, 2016, Study of cyclic CO2 injection for low-pressure light oil recovery under reservoir conditions, Fuel, 174, 296, 10.1016/j.fuel.2016.02.017 Madland, 2006, The influence of CO2 gas and carbonate water on the Mechanical stability of chalk, J. Petrol. Sci. Eng., 51, 149, 10.1016/j.petrol.2006.01.002 Mangalsingh, 1996, A laboratory investigation of the carbon dioxide immiscible process Moghadasi, 2004, Model study on the kinetics of oil field formation damage due to salt precipitation from injection, J. Petrol. Sci. Eng., 43, 201, 10.1016/j.petrol.2004.02.014 Moritis, 2002, Worldwide EOR survey, Oil Gas J., 100, 43 Nobakht, 2007, Effects of viscous and capillary forces on CO2 enhanced oil recovery under reservoir conditions, Energy Fuels, 21, 3469, 10.1021/ef700388a Okhovat, 2020, Experimental studies of CO2-brine-rock interaction effects on permeability alteration during CO2-EOR, J. Petrol. Explor. Prod. Technol., 10, 2293, 10.1007/s13202-020-00883-8 Okhovat, 2020, Experimental studies of CO2-brine-rock interaction effects on permeability alteration during CO2-EOR, J. Petrol. Explor. Prod. Technol., 10, 2293, 10.1007/s13202-020-00883-8 Pruess, 2001, Numerical modeling of aquifer disposal of CO2, vol. 16 Raza, 2017, Preliminary assessments of CO2 storage in carbonate formations: a case study from Malaysia, J. Geophys. Eng., 14, 533, 10.1088/1742-2140/aa5e71 Rostami, 2018, A new approach to characterize the performance of heavy oil recovery due to various gas injection, Int. J. Multiphas. Flow, 99, 273, 10.1016/j.ijmultiphaseflow.2017.10.014 Salem, 2013, Variation of petro physical properties due to carbon dioxide (CO2) storage in carbonate reservoirs, J. Petrol. Gas Eng., 4, 91 Sandeep, 2016, Permeability and flow field evolution due to dissolution of calcite in a 3-D porous rock under geothermal gradient and through-flow, Transport Porous Media, 112, 39, 10.1007/s11242-016-0631-0 Seyyedsar, 2016, Experimental investigation of tertiary CO2 injection for enhanced heavy oil recovery, J. Nat. Gas Sci. Eng., 34, 1205, 10.1016/j.jngse.2016.08.020 Stevens, 2001, Sequestration of CO2 in depleted oil and gas fields: global capacity, costs and barriers, 278 Trivedi, 2009, Oil recovery and sequestration potential of naturally fractured reservoirs during CO2 injection, Energy Fuels, 23, 4025, 10.1021/ef900361n Tsang, 2002, Scientific consideration related to regulation development for CO2 sequestration in brine formations, Environ Geolog42, 275, 10.1007/s00254-001-0497-4 Wang, 2011, Oil recovery and permeability reduction of a tight sandstone reservoir in immiscible and miscible CO2 flooding processes, Ind. Eng. Chem. Res., 50, 2388, 10.1021/ie1016046 Zarghami, 2017, Diffusion of carbon dioxide in formation water as a result of CO2 enhanced oil recovery and CO2 sequestration, J Pet Explor Prod Technol, 7, 161, 10.1007/s13202-016-0261-7 Zekri, 2013, Experimental investigations of variations in petrophysical rock properties due to carbon dioxide flooding in oil heterogeneous low permeability carbonate reservoirs, J Pet Explor Prod Technol, 3, 265, 10.1007/s13202-013-0063-0 Zhao, 2015, An experimental study for the effect of CO2-brine–rock interaction on reservoir physical properties, J. Energy Inst., 88, 27, 10.1016/j.joei.2014.05.001 Zivar, 2019, A new approach for predicting oil recovery factor during immiscible CO2 flooding in sandstones using dimensionless numbers, J Pet Explor Prod Technol, 9, 2325, 10.1007/s13202-019-0630-0