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Electroosmotic Flow in a Rough Nanochannel with Surface Roughness Characterized by Fractal Cantor

机译:分形康托表征表面粗糙度的粗糙纳米通道中的电渗流

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摘要

Molecular dynamics simulation is applied to study the electroosmotic flow in rough nanochannels, with particular attention given to the fluid–solid interactions. In the simulation, the surface roughness is characterized by a fractal Cantor. The roles of roughness height and fractal dimension on nanoscale electroosmotic flow are examined and analyzed. The concentration distributions, zeta potential and electroosmotic velocity are presented and investigated. The results indicate that surface roughness plays a significant role in the fluid–solid interaction and nanoscale electroosmotic flow. The distribution of dipole angle for water molecules in both the near-wall region and middle region is almost unaffected by surface roughness; however, a significant difference of dipole angle distribution is observed in the fluid region away from the wall. Interestingly, the concentration distributions, electroosmotic velocity and zeta potential are highly affected by the surface fractal dimension, even with the same roughness height.
机译:分子动力学模拟用于研究粗糙纳米通道中的电渗流,尤其要注意流固耦合。在模拟中,表面粗糙度由分形Cantor表征。考察并分析了粗糙度高度和分形维数在纳米电渗流中的作用。给出并研究了浓度分布,ζ电位和电渗速度。结果表明,表面粗糙度在流固耦合和纳米电渗流中起着重要作用。水分子在近壁区域和中部区域的偶极角分布几乎不受表面粗糙度的影响。然而,在远离壁的流体区域中观察到了偶极角分布的显着差异。有趣的是,即使在相同的粗糙度高度下,浓度分布,电渗速度和ζ电势也受表面分形维数的很大影响。

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