The implications of entrance region transport in hydrophobic microchannels are theoretically and experimentally investigated in this work. Detailed analytical solutions are derived, depicting the dependences of the liquid phase velocity profiles, entrance lengths, and friction factor variations on the relative thickness of a nanobubble-dispersed layer formed in the vicinity of the microchannel wall as a consequence of localized hydrophobic interactions. It is revealed that even for a layer of nanobubbles formed with a typical thickness in the tune of three orders of magnitude lower than the characteristic microchannel dimensions, the entrance length can be enhanced to the limit of about 1.5 times than that for the cases devoid of any hydrop...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
The implications of entrance region transport in hydrophobic microchannels are theoretically and exp...
We employ microparticle image velocimetry to investigate laminar microflows in hydrophobic microstru...
We employ microparticle image velocimetry to investigate laminar microflows in hydrophobic microstru...
Hydrophobicity has been widely reported for its superior behavior in drag reduction, self-cleaning, ...
Substantial experimental, theoretical, as well as numerical effort has been invested to understand t...
peer-reviewedThe unique wetting properties of superhydrophobic (SH) surfaces have attracted a consi...
Enabled by a technology to fabricate well-defined nanogrates over a large area (2x2 cm(2)), we repor...
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...
Slippage of liquid over rough superhydrophobic surfaces that induce the Cassie-Baxter state decrease...
In the present work, we experimentally study the flow of water over textured hydrophobic surfaces in...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
The implications of entrance region transport in hydrophobic microchannels are theoretically and exp...
We employ microparticle image velocimetry to investigate laminar microflows in hydrophobic microstru...
We employ microparticle image velocimetry to investigate laminar microflows in hydrophobic microstru...
Hydrophobicity has been widely reported for its superior behavior in drag reduction, self-cleaning, ...
Substantial experimental, theoretical, as well as numerical effort has been invested to understand t...
peer-reviewedThe unique wetting properties of superhydrophobic (SH) surfaces have attracted a consi...
Enabled by a technology to fabricate well-defined nanogrates over a large area (2x2 cm(2)), we repor...
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...
Slippage of liquid over rough superhydrophobic surfaces that induce the Cassie-Baxter state decrease...
In the present work, we experimentally study the flow of water over textured hydrophobic surfaces in...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...