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Featured researches published by Sung Hyun Jang.


Langmuir | 2017

Spontaneous and Flow-Driven Interfacial Phase Change: Dynamics of Microemulsion Formation at the Pore Scale

Mohsen Tagavifar; Ke Xu; Sung Hyun Jang; Matthew T. Balhoff; Gary A. Pope

The dynamic behavior of microemulsion-forming water-oil-amphiphiles mixtures is investigated in a 2.5D micromodel. The equilibrium phase behavior of such mixtures is well-understood in terms of macroscopic phase transitions. However, what is less understood and where experimental data are lacking is the coupling between the phase change and the bulk flow. Herein, we study the flow of an aqueous surfactant solution-oil mixture in porous media and analyze the dependence of phase formation and spatial phase configurations on the bulk flow rate. We find that a microemulsion forms instantaneously as a boundary layer at the initial surface of contact between the surfactant solution and oil. The boundary layer is temporally continuous because of the imposed convection. In addition to the imposed flow, we observe spontaneous pulsed Marangoni flows that drag the microemulsion and surfactant solution into the oil stream, forming large (macro)emulsion droplets. The formation of the microemulsion phase at the interface distinguishes the situation from that of the more common Marangoni flow with only two phases present. Additionally, an emulsion forms via liquid-liquid nucleation or the Ouzo effect (i.e., spontaneous emulsification) at low flow rates and via mechanical mixing at high flow rates. With regard to multiphase flow, contrary to the common belief that the microemulsion is the wetting liquid, we observe that the minor oil phase wets the solid surface. We show that a layered flow pattern is formed because of the out-of-equilibrium phase behavior at high volumetric flow rates (order of 2 m/day) where advection is much faster than the diffusive interfacial mass transfer and transverse mixing, which promote equilibrium behavior. At lower flow rates (order of 30 cm/day), however, the dynamic and equilibrium phase behaviors are well-correlated. These results clearly show that the phase change influences the macroscale flow behavior.


19th SPE Improved Oil Recovery Symposium, IOR 2014 | 2014

Microemulsion phase behavior measurements using live oils at high temperature and pressure

Sung Hyun Jang; Pathma Jith Liyanage; Jun Lu; Do Hoon Kim; Gayani Pinnawala Arachchilage; Chris Britton; Upali P. Weerasooriya; Gary A. Pope


SPE Improved Oil Recovery Conference | 2016

Co-solvent Partitioning and Retention

Leonard Chang; Dharmika S.P. Lansakara-P; Sung Hyun Jang; Upali P. Weerasooriya; Gary A. Pope


SPE Improved Oil Recovery Conference | 2016

A Systematic Method for Reducing Surfactant Retention to Extremely Low Levels

Sung Hyun Jang; Pathma Jith Liyanage; Mohsen Tagavifar; Leonard Chang; Karasinghe A.N. Upamali; Dharmika S.P. Lansakara-P; Upali P. Weerasooriya; Gary A. Pope


Fuel | 2018

Controlling the composition, phase volume, and viscosity of microemulsions with cosolvent

Mohsen Tagavifar; Sung Hyun Jang; Leonard Chang; Kishore K. Mohanty; Gary A. Pope


SPE Improved Oil Recovery Conference | 2016

New Surfactants and Co-Solvents Increase Oil Recovery and Reduce Cost

Karasinghe A.N. Upamali; Pathma Jith Liyanage; Jiajia Cai; Jun Lu; Sung Hyun Jang; Upali P. Weerasooriya; Gary A. Pope


Fuel | 2019

Prediction of microemulsion phase behavior from surfactant and co-solvent structures

Leonard Chang; Gary A. Pope; Sung Hyun Jang; Mohsen Tagavifar


Spe Journal | 2018

Alkaline/Surfactant/Polymer Flooding With Sodium Hydroxide in Indiana Limestone: Analysis of Water/Rock Interactions and Surfactant Adsorption

Mohsen Tagavifar; Himanshu Sharma; Denning Wang; Sung Hyun Jang; Gary A. Pope


Spe Journal | 2018

New Surfactants and Cosolvents Increase Oil Recovery and Reduce Cost

Karasinghe A.N. Upamali; Pathma Jith Liyanage; Sung Hyun Jang; Erin Shook; Upali P. Weerasooriya; Gary A. Pope


SPE Improved Oil Recovery Conference | 2018

Structure-Property Model for Microemulsion Phase Behavior

Leonard Chang; Sung Hyun Jang; Mohsen Tagavifar; Gary A. Pope

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Gary A. Pope

University of Texas at Austin

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Mohsen Tagavifar

University of Texas at Austin

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Leonard Chang

University of Texas at Austin

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Pathma Jith Liyanage

University of Texas at Austin

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Upali P. Weerasooriya

University of Texas at Austin

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Chris Britton

University of Texas at Austin

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Himanshu Sharma

University of Texas at Austin

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Jun Lu

University of Texas at Austin

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