We employ microparticle image velocimetry to investigate laminar microflows in hydrophobic microstructured channels, in particular the slip length. These microchannels consist of longitudinal microgrooves, which can trap air and prompt a shear-free boundary condition and thus slippage enhancement. Our measurements reveal an increase in the slip length when the width of the microgrooves is enlarged. The result of the slip length is smaller than the analytical prediction by Philip [Z. Angew. Math. Phys. 23, 353 (1972)] for an infinitely large and textured channel comprised of alternating shear-free and no-slip boundary conditions. The smaller slip length (as compared with the prediction) can be attributed to the confinement of the microchanne...
Despite numerous investigations in the literature on slip flows in textured microchannels, experimen...
Enabled by a technology to fabricate well-defined nanogrates over a large area (2x2 cm(2)), we repor...
A technique for quantifying velocity profiles of fluids flowing in circular microchannels is present...
We employ microparticle image velocimetry to investigate laminar microflows in hydrophobic microstru...
In the present work, we experimentally study the flow of water over textured hydrophobic surfaces in...
Fluid transportation in microfluidic system could be benefit from the slip on solid-liquid in...
In this paper, we present results on water flow past randomly textured hydrophobic surfaces with rel...
In this paper, we present results on water flow past randomly textured hydrophobic surfaces with rel...
In this paper, we show that large connected slip patches (hydrophobic patches) are a necessity to in...
Substantial experimental, theoretical, as well as numerical effort has been invested to understand t...
Tailoring the hydrodynamic boundary condition is essential for both applied and fundamental aspects ...
Substantial experimental, theoretical, as well as numerical effort has been invested to understand t...
Enabled by a technology to fabricate well-defined nanogrates over a large area (2x2 cm(2)), we repor...
In this work, flow friction in microchannels decorated with micropillars was investigated experiment...
Despite numerous investigations in the literature on slip flows in textured microchannels, experimen...
Despite numerous investigations in the literature on slip flows in textured microchannels, experimen...
Enabled by a technology to fabricate well-defined nanogrates over a large area (2x2 cm(2)), we repor...
A technique for quantifying velocity profiles of fluids flowing in circular microchannels is present...
We employ microparticle image velocimetry to investigate laminar microflows in hydrophobic microstru...
In the present work, we experimentally study the flow of water over textured hydrophobic surfaces in...
Fluid transportation in microfluidic system could be benefit from the slip on solid-liquid in...
In this paper, we present results on water flow past randomly textured hydrophobic surfaces with rel...
In this paper, we present results on water flow past randomly textured hydrophobic surfaces with rel...
In this paper, we show that large connected slip patches (hydrophobic patches) are a necessity to in...
Substantial experimental, theoretical, as well as numerical effort has been invested to understand t...
Tailoring the hydrodynamic boundary condition is essential for both applied and fundamental aspects ...
Substantial experimental, theoretical, as well as numerical effort has been invested to understand t...
Enabled by a technology to fabricate well-defined nanogrates over a large area (2x2 cm(2)), we repor...
In this work, flow friction in microchannels decorated with micropillars was investigated experiment...
Despite numerous investigations in the literature on slip flows in textured microchannels, experimen...
Despite numerous investigations in the literature on slip flows in textured microchannels, experimen...
Enabled by a technology to fabricate well-defined nanogrates over a large area (2x2 cm(2)), we repor...
A technique for quantifying velocity profiles of fluids flowing in circular microchannels is present...