Studying the effect of various surfactants on the possibility and intensity of fine migration during low-salinity water flooding in clay-rich sandstones
暂无分享,去创建一个
[1] Ronald Mercado,et al. Rheological demonstration of micellization changes of internal olefin sulfonate and alcohol alkoxy sulfate commercial surfactants upon interactions with inorganic salts , 2023, Results in Engineering.
[2] Saeed Khezerloo-ye Aghdam,et al. Thermodynamic Modeling of Saponin Adsorption Behavior on Sandstone Rocks: An Experimental Study , 2022, Arabian Journal for Science and Engineering.
[3] L. Zhong,et al. Review on Underlying Mechanisms of Low Salinity Waterflooding: Comparisons between Sandstone and Carbonate , 2022, Energy & Fuels.
[4] Z. You,et al. Review on physical and chemical factors affecting fines migration in porous media. , 2022, Water research.
[5] O. Shardt,et al. Inclusion of DLVO forces in simulations of non-Brownian solid suspensions: Rheology and structure , 2021, International Journal of Multiphase Flow.
[6] Pingli Liu,et al. Comparative study on the use of three types of clay stabilizers in acidification , 2021, Petroleum Science and Technology.
[7] P. Bedrikovetsky,et al. Fines migration in aquifers: Production history treatment and well behaviour prediction , 2021 .
[8] S. Riahi,et al. A Comparison of Different Nanoparticles’ Effect on Fine Migration by Low Salinity Water Injection for Oil Recovery: Introducing an Optimum Condition , 2021, Journal of Energy Resources Technology.
[9] E. V. Lau,et al. Multiple roles of graphene nanoparticles (GNP) in microbubble flotation for crude oil recovery from sand , 2021 .
[10] Saeed Khezerloo-ye Aghdam,et al. A laboratory study of a novel bio-based nonionic surfactant to mitigate clay swelling , 2021, Petroleum.
[11] H. Taher,et al. Remediation of crude oil-contaminated saline water using novel dispersants from fish and lobster wastes , 2021 .
[12] M. Haftani,et al. A Review of Fines Migration around Steam Assisted Gravity Drainage Wellbores , 2021 .
[13] I. Hussein,et al. Impact of clays on CO2 adsorption and enhanced gas recovery in sandstone reservoirs , 2021 .
[14] P. Pourafshary,et al. Fine Migration Control in Sandstones: Surface Force Analysis and Application of DLVO Theory , 2020, ACS omega.
[15] Zeeshan Tariq,et al. Novel gemini surfactant as a clay stabilizing additive in fracturing fluids for unconventional tight sandstones: Mechanism and performance , 2020 .
[16] Haitao Li,et al. The Study to Improve Oil Recovery through the Clay State Change during Low Salinity Water Flooding in Sandstones , 2020, ACS omega.
[17] M. Oeser,et al. Experimental investigation on the development of pore clogging in novel porous pavement based on polyurethane , 2020 .
[18] Rizwan Ahmed Khan,et al. Poly(Oxyethylene)-amidoamine Based Gemini Cationic Surfactants with Hydrophilic Spacers as Clay Stabilizers , 2020 .
[19] K. Shahbazi,et al. An experimental investigation on the use of saponin as a non-ionic surfactant for chemical enhanced oil recovery (EOR) in sandstone and carbonate oil reservoirs: IFT, wettability alteration, and oil recovery , 2020 .
[20] T. Kwon,et al. Fines migration and pore clogging induced by single- and two-phase fluid flows in porous media: From the perspectives of particle detachment and particle-level forces , 2020 .
[21] A. Kalantariasl,et al. Fines migration and permeability decline during reservoir depletion coupled with clay swelling due to low-salinity water injection: An analytical study , 2020, Journal of Petroleum Science and Engineering.
[22] S. Zhang,et al. Insights into mechanism of low salinity water flooding in sandstone reservoir from interfacial features of oil/brine/rock via intermolecular forces , 2020 .
[23] Lei Wang. Clay stabilization in sandstone reservoirs and the perspectives for shale reservoirs. , 2019, Advances in colloid and interface science.
[24] K. Shahbazi,et al. Mechanistic assessment of Seidlitzia Rosmarinus-derived surfactant for restraining shale hydration: A comprehensive experimental investigation , 2019, Chemical Engineering Research and Design.
[25] K. Shahbazi,et al. Primary evaluation of a natural surfactant for inhibiting clay swelling , 2019, Journal of Petroleum Science and Engineering.
[26] P. Bedrikovetsky,et al. Suspension-colloidal flow accompanied by detachment of oversaturated and undersaturated fines in porous media , 2019, Chemical Engineering Science.
[27] Abdolhossein Hemmati-Sarapardeh,et al. Application of Nanosilica for inhibition of fines migration during low salinity water injection: Experimental study, mechanistic understanding, and model development , 2019, Fuel.
[28] P. Bedrikovetsky,et al. Effects of fines migration on oil displacement by low-salinity water , 2019, Journal of Petroleum Science and Engineering.
[29] P. Pourafshary,et al. Effect of SiO2 nanoparticles on fines stabilization during low salinity water flooding in sandstones , 2019, Journal of Petroleum Science and Engineering.
[30] P. Brady,et al. Effect of divalent cations in formation water on wettability alteration during low salinity water flooding in sandstone reservoirs: Oil recovery analyses, surface reactivity tests, contact angle, and spontaneous imbibition experiments , 2019, Journal of Molecular Liquids.
[31] F. Hussain,et al. A laboratory study of the effect of creep and fines migration on coal permeability during single-phase flow , 2018, International Journal of Coal Geology.
[32] Xin-zhuang Cui,et al. Experimental simulation study on pore clogging mechanism of porous pavement , 2018, Construction and Building Materials.
[33] M. Jamialahmadi,et al. Performance of Smart Water in Clay-Rich Sandstones: Experimental and Theoretical Analysis , 2018, Energy & Fuels.
[34] P. Bedrikovetsky,et al. Effects of delayed particle detachment on injectivity decline due to fines migration , 2018, Journal of Hydrology.
[35] T. Austad,et al. Role of Kaolinite Clay Minerals in Enhanced Oil Recovery by Low Salinity Water Injection , 2018, Energy & Fuels.
[36] Mingzhen Wei,et al. Mineral Dissolution and Fine Migration Effect on Oil Recovery Factor by Low-Salinity Water Flooding in Low-Permeability Sandstone Reservoir , 2018 .
[37] Bin Yuan,et al. Using nanofluids to control fines migration for oil recovery: Nanofluids co-injection or nanofluids pre-flush? -A comprehensive answer , 2018 .
[38] Khalil Shahbazi,et al. Assessment of swelling inhibitive effect of CTAB adsorption on montmorillonite in aqueous phase , 2016 .
[39] Yefei Wang,et al. Mechanistic study of wettability alteration of oil-wet sandstone surface using different surfactants , 2015 .
[40] P. Pourafshary,et al. Application of nanofluid to control fines migration to improve the performance of low salinity water flooding and alkaline flooding , 2014 .
[41] James J. Sheng,et al. Critical review of low-salinity waterflooding , 2014 .
[42] M. Sommer,et al. Micrometer silicon isotope diagnostics of soils by UV femtosecond laser ablation , 2011 .
[43] Adell,et al. On the Applicability of DLVO Theory to the Prediction of Clay Colloids Stability. , 2000, Journal of colloid and interface science.
[44] Zbigniew Adamczyk,et al. Application of the DLVO theory for particle deposition problems , 1999 .
[45] R. Sedev,et al. DLVO and non-DLVO surface forces in foam films from amphiphilic block copolymers , 1999 .
[46] Shuman Mitra,et al. Micellar properties of Quillaja saponin. 1. Effects of temperature, salt, and pH on solution properties , 1997 .
[47] L. Schramm,et al. Fines migration in petroleum reservoirs , 1996 .
[48] Z. You,et al. Fines migration in geothermal reservoirs: Laboratory and mathematical modelling , 2019, Geothermics.
[49] L. Genolet,et al. Effects of Fines Migration on Low-Salinity Waterflooding: Analytical Modelling , 2016, Transport in Porous Media.
[50] P. Brady,et al. A surface complexation model of oil–brine–sandstone interfaces at 100 °C: Low salinity waterflooding☆ , 2012 .
[51] T. Austad,et al. Chemical Mechanism of Low Salinity Water Flooding in Sandstone Reservoirs , 2010 .