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Characterization of Surface Roughness Effects on Laminar Flow in Microchannels By Using Fractal Cantor Structures

机译:分形Cantor结构表征表面粗糙度对微通道层流的影响

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摘要

The fractal characterization of the topography of rough surfaces by using Cantor set structures is introduced in this paper. Based on the fractal Cantor surface, a model of laminar flow in rough microchannels is developed and numerically analyzed to study the characterization of surface roughness effects on laminar flow. The effects of Reynolds number, relative roughness, and fractal dimension on laminar flow are all discussed. The results indicate that the presence of roughness leads to the form of the detachment, and eddy generation is observed at the shadow of the roughness elements. The pressure drop in the rough channel along the flow direction is no longer in a linear fashion and larger than that in the smooth channel. The fluctuation characteristic of pressure drop along the stream, which is due to the vortex formation at the wall, is found. Differing from the smooth channel, the Poiseuille number for laminar flow in rough microchannels is no longer only dependent on the cross-sectional shape of the channel, but also strongly influenced by the Reynolds number, relative roughness and fractal dimension of the surface.
机译:本文介绍了使用Cantor集结构对粗糙表面的形貌进行分形表征的方法。基于分形的Cantor表面,建立了粗糙微通道中的层流模型,并对其进行了数值分析,以研究表面粗糙度对层流影响的特征。讨论了雷诺数,相对粗糙度和分形维数对层流的影响。结果表明,粗糙度的存在导致了剥离的形式,并且在粗糙度元件的阴影处观察到涡流的产生。沿流动方向在粗糙通道中的压降不再是线性的,而是大于在光滑通道中的压降。发现了由于壁上的涡流形成而导致的沿流的压降的波动特征。与光滑通道不同,粗糙微通道中层流的泊瓦数不再仅仅取决于通道的横截面形状,而且还受到雷诺数,表面相对粗糙度和分形维数的强烈影响。

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