Streamwise boundary undulations induce spanwise vorticity in flows. In Newtonian flow, vorticity decays exponentially with distance from the undulation. However, recent theory for inertioelastic polymeric flow predicts vorticity amplification in a "critical layer" far from the site of disturbance. Here we present the first experimental evidence for the existence of such critical layers, demonstrating their measurable role in real polymeric flows with inertia. These vorticity amplification effects should be considered in all evaluations of vorticity dynamics in inertioelastic flows with streamline curvature
The elasticity of polymer solutions is found to generate a new state of turbulence, elasto-inertial ...
Elasto-inertial turbulence is a new state of turbulence that may occur in certain viscoelastic flows...
When subjected to sufficiently strong velocity gradients, solutions of long, flexible polymers exhib...
We experimentally examine the Poiseuille flow of viscoelastic fluids over wavy surfaces. Five precis...
Polymer additives have a striking impact on vortical motions in transitional and fully turbulent flo...
We report quantitative evidence of mixing-layer elastic instability in a viscoelastic fluid flow bet...
A number of important industrial applications exploit the ability of small quantities of high molecu...
Simulations of elastoinertial turbulence (EIT) of a polymer solution at low Reynolds number are show...
A number of important industrial applications exploit the ability of small quantities of high molecu...
Creeping flow of polymeric fluid without inertia exhibits elastic instabilities and elastic turbulen...
The interplay between viscoelasticity and inertia in dilute polymer solutions at high deformation ra...
Recently discovered traveling-wave solutions to the Navier–Stokes equations in plane shear geometrie...
International audienceWe explore the flow of highly shear thinning polymer solutions in straight geo...
The dynamics of turbulence generated and controlled by polymer additives is investigated from the pe...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/62901/1/405027a0.pd
The elasticity of polymer solutions is found to generate a new state of turbulence, elasto-inertial ...
Elasto-inertial turbulence is a new state of turbulence that may occur in certain viscoelastic flows...
When subjected to sufficiently strong velocity gradients, solutions of long, flexible polymers exhib...
We experimentally examine the Poiseuille flow of viscoelastic fluids over wavy surfaces. Five precis...
Polymer additives have a striking impact on vortical motions in transitional and fully turbulent flo...
We report quantitative evidence of mixing-layer elastic instability in a viscoelastic fluid flow bet...
A number of important industrial applications exploit the ability of small quantities of high molecu...
Simulations of elastoinertial turbulence (EIT) of a polymer solution at low Reynolds number are show...
A number of important industrial applications exploit the ability of small quantities of high molecu...
Creeping flow of polymeric fluid without inertia exhibits elastic instabilities and elastic turbulen...
The interplay between viscoelasticity and inertia in dilute polymer solutions at high deformation ra...
Recently discovered traveling-wave solutions to the Navier–Stokes equations in plane shear geometrie...
International audienceWe explore the flow of highly shear thinning polymer solutions in straight geo...
The dynamics of turbulence generated and controlled by polymer additives is investigated from the pe...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/62901/1/405027a0.pd
The elasticity of polymer solutions is found to generate a new state of turbulence, elasto-inertial ...
Elasto-inertial turbulence is a new state of turbulence that may occur in certain viscoelastic flows...
When subjected to sufficiently strong velocity gradients, solutions of long, flexible polymers exhib...