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Simulations of slip flow on nanobubble-laden surfaces

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arxiv 1005.5717 v1 pith:4UZ6GDP5 submitted 2010-05-31 physics.flu-dyn cond-mat.soft

Simulations of slip flow on nanobubble-laden surfaces

classification physics.flu-dyn cond-mat.soft
keywords slipsurfacesflowbubblesdetectedlargesimulationssurface
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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On microstructured hydrophobic surfaces, geometrical patterns may lead to the appearance of a superhydrophobic state, where gas bubbles at the surface can have a strong impact on the fluid flow along such surfaces. In particular, they can strongly influence a detected slip at the surface. We present two-phase lattice Boltzmann simulations of a flow over structured surfaces with attached gas bubbles and demonstrate how the detected slip depends on the pattern geometry, the bulk pressure, or the shear rate. Since a large slip leads to reduced friction, our results allow to assist in the optimization of microchannel flows for large throughput.

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