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| 1 | Yellow-green electroluminescence of samarium complexes of 8-hydroxyquinoline显示文摘 | Sara Karimi Behzad Ezzatollah Najafi Mostafa M. Amini Mohammad Janghouri Ezeddin Mohajerani Seik Weng Ng | 2014 | Journal of Luminescence2014,,: | 1 |
| 2 | Surfactant and nanoparticle synergy:Towards improved foam stability显示文摘Surfactant foam stability gets a lot of interest while posing a significant obstacle to many industrial operations.One of the viable solutions for addressing gas mobility concerns and boosting reservoir fluid sweep efficiency during solvent-based enhanced heavy oil recovery processes is foam formation.The synergistic effect of nanoparticles and surfactants in a porous reservoir media can help create a more durable and sturdier foam.This study aims to see how well a combination of the nanoparticles(NPs)and surfactant can generate foam for controlling gas mobility and improving oil recovery.This research looked at the effects of silicon and aluminum oxide nanoparticles on the bulk and dynamic stability of sodium dodecyl surfactant(SDS)-foam in the presence and absence of oil.Normalized foam height,liquid drainage,half-decay life,nanoparticle deposition,and bubble size distribution of the generated foams with time were used to assess static foam stability in the bulk phase,while dynamic stability was studied in the micromodel.To understand the processes of foam stabilization by nanoparticles,the microscopic images of foam and the shape of bubbles were examined.When nanoparticles were applied in foamability testing in bulk and dynamic phase,the foam generation and stability were improved by 23%and 17%,respectively.In comparison to surfactant alone,adding nanoparticles to surfactant solutions leads to a more significant pressure drop of 17.34 psi for SiO_(2)and 14.86 psi for Al_(2)O_(3)NPs and,as a result,a higher reduction in gas mobility which ultimately assists in enhancing oil recovery. | Arifur Rahman Farshid Torabi Ezeddin Shirif | 2023 | Petroleum2023,9,2: | 0 |
| 3 | Modified Equation of State for Pure Compounds显示文摘 | Ashutosh Kumar Ezeddin Shirif Amr Henni | 2012 | Journal of Earth Science and Engineering2012,2,8: | 0 |
| 4 | Estimating Average Reservoir Pressure: A Neural Network Approach with Limited Data显示文摘 | Saber Elmabrouk Ezeddin Shirit Rene Mayouga | 2012 | Journal of Earth Science and Engineering2012,2,11: | 0 |
| 5 | SAGD Optimization for Heterogeneous Reservoir显示文摘 | Adam Stafievsky Ezeddin Shirif Kyle Gerein Edi Karamehic | 2012 | Journal of Earth Science and Engineering2012,2,11: | 0 |
| 6 | A Hybrid Genetic Algorithm to Interpolate and Predict Average Reservoir Pressure显示文摘 | Saber Elmabrouk Ezeddin Shirif | 2012 | 材料科学与工程(中英文A版)2012,2,9: | 0 |
| 7 | Effect of Aromatic Ring, Cation, and Anion Types of Ionic Liquids on Heavy Oil Recovery显示文摘Surfactant/alkali flooding is one of the best chemical flooding methods to enhance the oil Recovery Factor(RF).In this research,Ionic Liquid/Alkali(ILA)mixtures were chosen to represent a form of chemical flooding experiments.The selected Ionic Liquids(ILs),{[EMIM][Cl],[THTDPH][Cl],[EMIM][Ac],[BzMIM][Cl],[DMIM][Cl],[BzMIM][TOS],[dMIM][TOS]and[MPyr][TOS]},were introduced to investigate their efficiency in improving heavy oil(14o API)RF from the sand packs.Besides,the use of mixtures of the same ionic liquids and brine(3.37 wt.% salts)with an alkali(Sodium Bicarbonate[NaHCO3])were also investigated.In this experimental study,the flooding process started with injecting about 3.2 Pore Volumes(PVs)of only brine,followed by one PV of the chemical composites,and flushed with two PVs of formation brine.The study discussed the influence of cation type,anion type,the structure of the ILs,and the effect of combining ILs/alkali on the RF.The results revealed that the proposed chemical mixtures are effective in enhancing the recovery factor.ILs with shorter alkyl chain and more aromatic rings are noticeably more efficient in enhancing the RF.Finding the optimum composition of([DMIM][Cl]+NaHCO3)the chemical slug increased the additional RF up to 31.55(%OOIP).Also,increasing the slug size to two PVs improved the RF to 42.13(%OOIP).The recovery factor mechanism was explained and supported by measuring the effect of IL types on the viscosity,Surface Tension(SFT),and Zeta Potential(ZP)of the mixture. | Ahmed Tunnish Amr Henni Ezeddin Shirif | 2018 | Journal of Management Science & Engineering Research2018,1,1: | 0 |
| 8 | Lattice Boltzmann Simulation of Mixed Convection Heat Transfer in a Driven Cavity with Non-uniform Heating of the Bottom Wall显示文摘The goal of this article is to study numerically the mixed convection in a differentially heated lid-driven cavity with non-uniform heating of the bottom wall. The velocity field is solved by a hybrid scheme with multiple relaxation time Lattice Boltzmann(MRT-LBM) model, while the temperature field is obtained by resolution of the energy balance equation using the finite difference method(FDM). First, the model is checked and validated using data from the literature. Validation of the present results with those available in the literature shows a good agreement.A good efficiency in time simulation is confirmed. Thereafter, the model has been applied to mixed convection in a driven cavity with non-uniform heating wall at the fixed Grashof number Gr = 106. It is found that, the heat transfer is weakened as the Richardson number is augmented. For Gr = 106, we note the appearance of secondary vortices at different positions of the cavity corners. | Soufiene Bettaibi Ezeddine Sediki Frdric Kuznik Sauro Succi | 2015 | Communications in Theoretical Physics2015,63,1: | 0 |