Viscoelastic instabilities are notoriously sensitive to their geometrical environment. Consequently, understanding the onset and general behavior of viscoelastic instabilities in geometrically complex applications where viscoelastic fluids naturally occur, such as porous media, is far from a trivial task. To this aim, this study numerically investigates the geometrical dependence of viscoelastic instabilities through confined one-dimensional channel arrays of circular pore contractions of ideal (i.e., symmetrical) and non-ideal (i.e., asymmetrical) pore configurations. At low elasticity, we demonstrate that the viscoelastic instability behavior in all geometries is the same as it was previously reported in ideal pore geometries, which can b...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
Improving the displacement efficiency of capillary entrapments in porous media by adding high molecu...
We investigate creeping viscoelastic fluid flow through two-dimensional porous media consisting of r...
Viscoelastic flow through porous media is important in industrial applications such as enhanced oil ...
Many artificial and natural fluids contain macromolecules, particles or droplets that impart complex...
Viscoelastic flows through porous media become unstable and chaotic beyond critical flow conditions,...
The flow of viscoelastic fluids in porous media is encountered in many practical applications, such ...
When a viscoelastic fluid, such as an aqueous polymer solution, flows through a porous medium, the f...
When a viscoelastic fluid, such as an aqueous polymer solution, flows through a porous medium, the f...
When a viscoelastic fluid, such as an aqueous polymer solution, flows through a porous medium, the f...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
Improving the displacement efficiency of capillary entrapments in porous media by adding high molecu...
We investigate creeping viscoelastic fluid flow through two-dimensional porous media consisting of r...
Viscoelastic flow through porous media is important in industrial applications such as enhanced oil ...
Many artificial and natural fluids contain macromolecules, particles or droplets that impart complex...
Viscoelastic flows through porous media become unstable and chaotic beyond critical flow conditions,...
The flow of viscoelastic fluids in porous media is encountered in many practical applications, such ...
When a viscoelastic fluid, such as an aqueous polymer solution, flows through a porous medium, the f...
When a viscoelastic fluid, such as an aqueous polymer solution, flows through a porous medium, the f...
When a viscoelastic fluid, such as an aqueous polymer solution, flows through a porous medium, the f...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
We compare the flow behavior of viscoelastic surfactant (VES) solutions and Newtonian fluids through...
Improving the displacement efficiency of capillary entrapments in porous media by adding high molecu...
We investigate creeping viscoelastic fluid flow through two-dimensional porous media consisting of r...