H009
Pore-Scale Physics: Recent Advances in Experimental and Computational Methods IV Posters

Monday, 7 December 2020: 04:00-20:59
Poster
Primary Convener:  Yashar Mehmani, Stanford University, Energy Resources Engineering, Stanford, CA, United States
Conveners:  Bo Guo, University of Arizona, Department of Hydrology and Atmospheric Sciences, Tucson, AZ, United States, Francisco Jose Carrillo, Princeton University, Princeton, NJ, United States and Hamdi Tchelepi, Stanford University, Energy Resources Engineering, Stanford, CA, United States
Primary Liaison:  Yashar Mehmani, Stanford University, Energy Resources Engineering, Stanford, CA, United States
Chairs:  Yashar Mehmani, Stanford University, Energy Resources Engineering, Stanford, CA, United States, Bo Guo, University of Arizona, Department of Hydrology and Atmospheric Sciences, Tucson, AZ, United States and Francisco Jose Carrillo, Princeton University, Princeton, NJ, United States
OSPA Liaison:  Francisco Jose Carrillo, Princeton University, Princeton, NJ, United States
 
Optimizing CO2 Trapping in Geological Carbon Sequestration by Reducing Nonwetting Phase Connectivity (755467)
Brittany Davis1, Anna L Herring2 and Dorthe Wildenschild1, (1)Oregon State University, Corvallis, OR, United States, (2)Australian National University, Canberra, ACT, Australia
 
Pore-by-pore wettability characterization in sandstone and carbonate rocks (683582)
Gaetano Garfi1, Maja Rücker2, Qingyang Lin3, Steffen Berg4, Cedric M John5 and Samuel C Krevor1, (1)Imperial College London, Earth Science & Engineering, London, SW7, United Kingdom, (2)Imperial College London, Department of Chemical Engineering, London, United Kingdom, (3)Imperial College London, Earth Science & Engineering, London, United Kingdom, (4)Shell Global Solutions International, Rijswijk, Netherlands, (5)Imperial College London, London, United Kingdom
 
Wetting alteration and oil redistribution within the pores of Berea sandstone during low salinity flooding (681024)
Edward Andrews1, Gaetano Garfi1, Ann H Muggeridge2, Alistair Jones2 and Samuel C Krevor1, (1)Imperial College London, Earth Science & Engineering, London, SW7, United Kingdom, (2)Imperial College London, Earth Science & Engineering, London, United Kingdom
 
Microscale Simulation of Two-Fluid Flow in Porous Media for Macroscale Model Evaluation, Validation, and Parameter Estimation (769140)
Christopher P Fowler, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States and Cass T Miller, University of North Carolina at Chapel Hill, Environmental Science and Engineering, Chapel Hill, NC, United States
 
Comprehensive Numerical Study of Fluid Displacement in Homogeneous/Heterogeneous Microstructures with Consideration of Inertial Effects (772813)
Yu Chen1, Jeffrey Hyman1, Qinjun Kang2 and Hari Selvi Viswanathan1, (1)Los Alamos National Laboratory, Los Alamos, NM, United States, (2)Los Alamos National Lab, Los Alamos, NM, United States
 
Analysis of Capillary Pressure Modeling for Two-Fluid-Phase Porous Medium Systems (738460)
Kelsey Bruning and Cass T Miller, University of North Carolina at Chapel Hill, Environmental Science and Engineering, Chapel Hill, NC, United States
 
Effect of grain size distribution on interfacial area-saturation curves in multiphase flow through porous media (761574)
Fizza Zahid1, Jeffrey A Cunningham1 and Amy L Stuart2, (1)University of South Florida Tampa, Department of Civil and Environmental Engineering, Tampa, FL, United States, (2)University of South Florida, Tampa, Department of Civil and Environmental Engineering, Tampa, FL, United States
 
A Comprehensive Investigation for Gravity-driven Ostwald Ripening in Porous Media (676828)
Yitian Feng, Zhejiang University, Hangzhou, China, Ke Xu, Massachusetts Institute of Technology, Cambridge, MA, United States and Yashar Mehmani, Stanford University, Energy Resources Engineering, Stanford, CA, United States
 
Static Capillary Pressure of Ganglion in Porous Media (676817)
Chuanxi Wang, Peking University, Beijing, China, Ke Xu, Massachusetts Institute of Technology, Cambridge, MA, United States and Yashar Mehmani, Stanford University, Energy Resources Engineering, Stanford, CA, United States
 
Modeling Flow of Shear Dependent non-Newtonian Fluids in Porous Medium Systems (769547)
Christopher Bowers, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States and Cass T Miller, University of North Carolina at Chapel Hill, Environmental Science and Engineering, Chapel Hill, NC, United States
 
3-D imaging reveals how polymers can aid groundwater remediation (668062)
Christopher A Browne, Princeton University, Princeton, NJ, United States and Sujit Datta, Princeton University, Chemical and Biological Engineering, Princeton, NJ, United States
 
A fixed-stress split for the simulation of coupled pore-scale flow and grain mechanics (675114)
Yue Meng1, Wei Li2, Bauyrzhan Primkulov1 and Ruben Juanes1, (1)Massachusetts Institute of Technology, Cambridge, MA, United States, (2)Massachusetts Institute of Technology, Department of Civil and Environmental Engineering, Cambridge, MA, United States
 
(Ba,Sr)SO4 OSCILLATORY ZONING: A MICROFLUIDIC EXPERIMENT AND ADVANCED PORE SCALE MODELLING TO UNRAVEL THE FORMATION PROCESS (678400)
Jenna Poonoosamy1, Enzo Curti2, Dirk Bosbach3, Sergey Churakov2, Thorsten Geisler4, Guido Deismann3 and Nikolaos Prasianakis5, (1)Forschungszentrum Jülich GmbH, Jülich 52428, Germany, (2)Paul Scherrer Institut, Villigen, Switzerland, (3)Forschungszentrum Jülich GmbH, Jülich, Germany, (4)Rheinische Friedrich-Wilhems-Universität Bonn, Bonn, Germany, (5)Paul Scherrer Institute, Villingen, Switzerland
 
Pore structure creates vortex-induced reaction hot spots in low Reynolds number porous media flows: A microfluidic and numerical investigation (681363)
Michael Chen, University of Minnesota Twin Cities, Minneapolis, MN, United States, Sang Lee, University of Minnesota Twin Cities, Earth and Environmental Sciences, Minneapolis, MN, United States and Peter K. Kang, University of Minnesota, Department of Earth and Environmental Sciences, Minneapolis, MN, United States
 
A pore-scale numerical investigation on the impact of heterogeneity in predicting flow properties of carbonate rocks. (771507)
Olubukola Ishola, Oklahoma State University, Stillwater, OK, United States and Javier Vilcaez, Oklahoma State University Main Campus, Stillwater, OK, United States
 
Quantitative Comparison of Magnetic Pore Fabric and Pore Fabric Characterization Based on High-Resolution X-Ray Computed Tomography in Synthetic Samples and Sedimentary Rocks (723627)
Yi Zhou1, Michele Pugnetti1, Anneleen Foubert2, Christoph Neururer2 and Andrea Regina Biedermann1, (1)University of Bern, Institute of Geological Sciences, Bern, Switzerland, (2)University of Fribourg, Geosciences, Fribourg, Switzerland
 
Testing Ferrofluid Impregnation Efficiency in Artificial Samples and Transparent Polymers with Magnetic and Optical Methods: Implications for Magnetic Pore Fabric Studies (699337)
Michele Pugnetti, Yi Zhou and Andrea Regina Biedermann, University of Bern, Institute of Geological Sciences, Bern, Switzerland
 
Flow and Transport Phenomena in Geosystems and Petroleum Engineering: Advances and Applications of Silica-Based Nanofluids for Low-Salinity Water Flooding and Enhanced Oil Recovery Processes in Oil Reservoirs (688282)
Christophe J G Darnault1, Bruce Patrick Phibbs1, Casey McCarroll1 and Brightin Rex Blanton1,2, (1)Clemson University, Department of Environmental Engineering and Earth Sciences, Clemson, SC, United States, (2)University of Mississippi, Department of Geology and Geological Engineering, Oxford, MS, United States
 
Overcoming the Model-to-Experimental Data Fit Problem in Porous Media: a New Quantitative Method to Evaluate and Compare Models (671968)
Ishani Banerjee1, Anneli Guthke1, Cole J.C. Van De Ven2, Kevin Mumford2 and Wolfgang Nowak1, (1)University of Stuttgart, Stochastic Simulation and Safety Research for Hydrosystems (IWS/SC SimTech), Stuttgart, Germany, (2)Queen's University, Department of Civil Engineering, Kingston, ON, Canada
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