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Inelastic non-Newtonian flow over heterogeneously slippery surfaces

机译:非均匀滑动表面的无弹性非牛顿流

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摘要

In this study, we investigated inelastic non-Newtonian fluid flow over heterogeneously slippery surfaces. First, we simulated the flow of aqueous xanthan gum solutions over a bubble mattress, which is a superhydrophobic surface consisting of transversely positioned no-slip walls and no-shear gas bubbles. The results reveal that for shear-thinning fluids wall slip can be increased significantly, provided that the system is operated in the shear-thinning regime. For a 0.2 wt% xanthan gum solution with a power-law index of n = 0.4, the numerical results indicate that wall slip can be enhanced 3.2 times when compared to a Newtonian liquid. This enhancement factor was also predicted from a theoretical analysis, which gave an expression for the maximum slip length that can be attained over flat, heterogeneously slippery surfaces. Although this equation was derived for a no-slip/no-shear unit length that is much larger than the typical size of the system, we found that it can also be used to predict the enhancement in the regime where the slip length is proportional to the size of the no-shear region or the bubble width. The results could be coupled to the hydrodynamic development or entrance length of the system, as maximum wall slip is only reached when the fluid flow can fully adapt to the no-slip and no-shear conditions at the wall.
机译:在这项研究中,我们研究了非均匀滑动表面上的非弹性非牛顿流体。首先,我们在泡沫床垫上模拟了黄原胶溶液的流动,这是一种超疏水表面,包括由横向定位的无滑壁和无剪切气泡组成。结果表明,对于剪切稀疏的流体壁滑移可以显着增加,条件是系统在剪切稀疏状态下操作。对于0.2wt%黄原胶溶液,具有n = 0.4的动力法指数,数值结果表明,与牛顿液体相比,壁滑增强了3.2倍。从理论分析中还预测了这种增强因子,这给了最大滑动长度的表达,其可以在平坦的异构滑动表面上获得。虽然这种方程被推导出用于无剪切/无剪切单元长度大于系统的典型大小,但我们发现它还可以用于预测滑动长度与之成比例的制度的增强无剪切区域的大小或气泡宽度。结果可以耦合到系统的流体动力学开发或入口长度,因为当流体流动可以完全适应墙壁的无滑矛和无剪切条件时才达到最大壁滑动。

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