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Apparent slip of shear thinning fluid in a microchannel with a superhydrophobic wall

机译:用超疏水壁在微通道中的剪切稀释液的表观滑动

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The peculiarities of simple shear flow of shear thinning fluids over a superhydrophobic wall consisting of a set of parallel gas-filled grooves and solid stripes (domains with slip and stick boundary conditions) are studied numerically. The Carreau-Yasuda model is used to provide further insight into the problem of the slip behavior of non-Newtonian fluids having a decreasing viscosity with a shear rate increase. This feature is demonstrated to cause a nonlinear velocity profile leading to the apparent slip. The corresponding transverse and longitudinal apparent slip lengths of a striped texture are found to be noticeably larger than the respective effective slip lengths of Newtonian liquids in microchannels of various thicknesses and surface fractions of the slip domains. The viscosity distribution of the shear thinning fluid over the superhydrophobic wall is carefully investigated to describe the mechanism of the apparent slip. Nonmonotonic behavior of the apparent slip length as a function of the applied shear rate is revealed. This important property of shear thinning fluids is considered to be sensitive to the steepness of the viscosity flow curve, thus providing a way to decrease considerably the flow resistance in microchannels.
机译:在数值上研究了由一组平行气体填充的槽和固体条纹(具有滑动和粘附边界条件)组成的超疏水壁上的剪切稀疏流体简单剪切流体的特性。 Carreau-Yasuda模型用于进一步了解非牛顿流体的粘度降低的非牛顿流体的滑移行为的问题。证明了该特征以导致非线性速度曲线导致显然滑动。发现条纹纹理的相应横向和纵向表观滑动长度明显大于牛顿液体在微通道中的各种厚度和滑动域的表面级分中的各个有效滑动长度。仔细研究了超疏水壁上的剪切稀释液的粘度分布,以描述表观滑动的机制。揭示了作为施加剪切速率的函数的表观滑动长度的非单调行为。剪切稀释流体的这种重要特性被认为对粘度流动曲线的陡度敏感,从而提供了一种可显着降低微通道的流动阻力的方法。

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