首页> 外文会议>ASME International Conference on Micro/Nanoscale Heat and Mass Transfer >LIQUID SLIPPAGE IN CONFINED FLOWS: EFFECT OF PERIODIC MICROPATTERNS OF ARBITRARY PITCH AND AMPLITUDE
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LIQUID SLIPPAGE IN CONFINED FLOWS: EFFECT OF PERIODIC MICROPATTERNS OF ARBITRARY PITCH AND AMPLITUDE

机译:限制流动的液体滑动:任意间距和幅度的周期性微图案的效果

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The recently confirmed violation of the no-slip boundary condition in the flow of small-molecule liquids through microchannels and nanochannels has technological implications such as friction reduction. However, for significant friction reduction at low cost, the microchannel wall needs to be chemically inhomogeneous. The direct fluid dynamic consequence of this requirement is a spatial variation in the local degree of liquid slippage. In this work, the pressure-driven flow in a channel with periodically patterned slippage on the channel walls is studied using a spectrally accurate semi-analytical approach based on Fourier decomposition. The method puts no restrictions on the pitch (or wavelength) and amplitude of the pattern. The predicted effective slip length in the limits of small pattern amplitude and thick channels is found to be consistent with previously published results. The effective degree of slippage decreases with the patterning amplitude. Finer microchannels and longer pattern wavelengths promote slippage.
机译:最近证实违反了通过微通道和纳米的小分子液体流动的无滑动边界条件具有技术影响,例如摩擦减少。然而,对于低成本的显着摩擦降低,微通道壁需要化学不均匀。该要求的直接流体动力结果是局部液体滑动程度的空间变化。在这项工作中,使用基于傅里叶分解的光谱准确的半分析方法研究了通道壁上的通道中具有周期性图案化滑动的沟道中的压力驱动的流动。该方法对图案的间距(或波长)和幅度没有限制。发现在小型幅度和厚通道的极限中预测的有效滑动长度与先前公布的结果一致。有效的滑动程度随着图案化幅度降低。更精细的微通道和更长的图案波长促进滑动。

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