In this work we propose a new type of microfluidic rectifier, which is able to operate efficiently under creeping flow conditions. The flow of Newtonian and non-Newtonian fluids was investigated experimentally in different microchannels with triangular (nozzle/diffuser) and hyperbolic shapes in order to achieve high anisotropic flow resistance between the two flow directions. The Newtonian fluid used was de-ionized water and the viscoelastic fluids were aqueous solutions of polyacrylamide and polyethylene oxide with different molecular weights. Pressure drop measurements were performed in addition to visualizations of the flow patterns by streak line photography for a wide range of flow rates. For the Newtonian flows, inertia leads to the a...
Background: The study of blood flow in vessels is always crucial to understand cardiovascular diseas...
We present a detailed numerical study of the flow of a Newtonian fluid through microrheometric devic...
We investigate the stability of steady planar stagnation flows of a dilute polyethylene oxide (PEO) ...
The flow of Newtonian and non-Newtonian fluids within microfluidic rectifiers with a hyperbolic shap...
The elastic properties of non-Newtonian liquids results in nonlinear fluid dynamics, hence leading t...
This paper reports the improvement of rectification effects in diffuser/nozzle structures with visco...
Fluidic rectification refers to anisotropic flow resistance upon changing the flow direction. Polyme...
It is one of the basic concepts of Newtonian fluid dynamics that at low Reynolds number (Re) the Nav...
Abstract. The flow of viscoelastic fluids through a microfluidic flow-focusing device was studied nu...
Microfluidics is the study of liquid flow in the small scale (10-1000 micron) channel networks and ...
In this study, two microfluidic devices are proposed as simplified 1-D microfluidic analogues of a p...
In this work we optimise microfluidic converging/diverging geometries in order to produce constant s...
The flow of a viscoelastic fluid through a microfluidic flow-focusing device is investigated numeric...
Many artificial and natural fluids contain macromolecules, particles or droplets that impart complex...
Abstract. The flow visualizations of viscoelastic flows in the mixing-separating geometry of Cochran...
Background: The study of blood flow in vessels is always crucial to understand cardiovascular diseas...
We present a detailed numerical study of the flow of a Newtonian fluid through microrheometric devic...
We investigate the stability of steady planar stagnation flows of a dilute polyethylene oxide (PEO) ...
The flow of Newtonian and non-Newtonian fluids within microfluidic rectifiers with a hyperbolic shap...
The elastic properties of non-Newtonian liquids results in nonlinear fluid dynamics, hence leading t...
This paper reports the improvement of rectification effects in diffuser/nozzle structures with visco...
Fluidic rectification refers to anisotropic flow resistance upon changing the flow direction. Polyme...
It is one of the basic concepts of Newtonian fluid dynamics that at low Reynolds number (Re) the Nav...
Abstract. The flow of viscoelastic fluids through a microfluidic flow-focusing device was studied nu...
Microfluidics is the study of liquid flow in the small scale (10-1000 micron) channel networks and ...
In this study, two microfluidic devices are proposed as simplified 1-D microfluidic analogues of a p...
In this work we optimise microfluidic converging/diverging geometries in order to produce constant s...
The flow of a viscoelastic fluid through a microfluidic flow-focusing device is investigated numeric...
Many artificial and natural fluids contain macromolecules, particles or droplets that impart complex...
Abstract. The flow visualizations of viscoelastic flows in the mixing-separating geometry of Cochran...
Background: The study of blood flow in vessels is always crucial to understand cardiovascular diseas...
We present a detailed numerical study of the flow of a Newtonian fluid through microrheometric devic...
We investigate the stability of steady planar stagnation flows of a dilute polyethylene oxide (PEO) ...