14–17 May 2018
New Orleans
US/Central timezone

Abstracts from MS 1.17: Flow of Non-Newtonian and Complex Fluids Through Porous Media

15 / 15
ID Title State Accepted type Reviewed
54 Using Lattice Boltzmann Method to Study Polymer Viscoelasticity Effect for Polymer Flooding
Accepted
Poster
101 Flow of Yield Stress and Carreau fluids through Rough-Walled Rock Fractures and Packed Beads: prediction and experiments
Accepted
Oral 20 Minutes
106 Design of Large-Scale Physical Simulation Model for Alkaline-Surfactant-Polymer Flooding
Accepted
Poster
206 Semi-analytically derived flow-rate/pressure drop relationships for the flow of yield stress fluids through rectilinear pipes of non-circular cross-sections.
Accepted
Poster
222 A new approach for linear rheological characterization and modeling of viscoelastic surfactant systems under shear components in porous media
Accepted
Oral 20 Minutes
260 The Formation of Microemulsion at Flow Conditions in Rock
Accepted
Poster + 3 Minute Pitch
277 CO2 Foam Displacement Behavior in a Water/Oil Saturated Homogeneous Porous Media
Accepted
Poster + 3 Minute Pitch
497 Experimental study of plug formation in shear-thinning fluids within micro-channel devices
Withdrawn
n/a
672 A pore-scale study of viscoelastic surfactant flow through porous media
Accepted
Poster
823 Flow Behavior of Sheared Foam in Porous Media: An Experimental Investigation on the Effects of Stabilizing Agents and Oil Presence
Accepted
Oral 20 Minutes
957 Oscillation of oil droplets at pore constrictions with viscoelastic polymers
Withdrawn
n/a
964 Effect of select naphthenic acids on oil-water interfacial dynamics
Accepted
Poster + 3 Minute Pitch
965 Brine-Oil Interfacial Rheological Response to Adjusted Water Chemistry in Berea Sandstone at High Temperature
Accepted
Oral 20 Minutes
968 Pore-scale Experimental Investigation of Displacement Mechanisms during Flow of Non-Newtonian Fluids in Natural Porous Media
Accepted
Oral 20 Minutes
987 Non-Newtonian fluid apparent viscosity calculation, based on fluid thin porous media face velocity, an experimental correlation from transmission fluid filtration industry
Withdrawn
n/a