论文标题

表面活性剂污染的超疏水通道的层流阻力减少

Laminar drag reduction in surfactant-contaminated superhydrophobic channels

论文作者

Tomlinson, Samuel D., Gibou, Frédéric, Luzzatto-Fegiz, Paolo, Temprano-Coleto, Fernando, Jensen, Oliver E., Landel, Julien R.

论文摘要

虽然超疏水表面(SHSS)显示出减少阻力应用的希望,但其性能可能会因表面活性剂的痕迹而损害,从而产生了马龙诺(Marangoni)的压力,从而增加了阻力。在三维层流通道流中,解决了该问题,可溶性表面活性剂在两个壁上都有周期性的SHS。我们假设扩散足以使跨通道浓度梯度很小。利用了一个长波理论,该理论构成了快速的Marangoni驱动流,我们得出了表面活性剂演化的一维模型,这使我们能够预测整个参数空间的阻力减少。该系统表现出多种制度,涉及Marangoni效应,散装和界面扩散,对流和剪切分散之间的竞争。我们在高维参数空间中绘制渐近区域,从而得出了每个区域的阻力减少的近似值,并将其与数值模拟进行了比较。我们的地图地图集提供了一个全面的分析指南,用于设计具有SHSS的表面活性剂污染的通道,以最大程度地减少应用程序的阻力。

While superhydrophobic surfaces (SHSs) show promise for drag reduction applications, their performance can be compromised by traces of surfactant, which generate Marangoni stresses that increase drag. This question is addressed for soluble surfactant in a three-dimensional laminar channel flow, with periodic SHSs on both walls. We assume that diffusion is sufficiently strong for cross-channel concentration gradients to be small. Exploiting a long-wave theory that accounts for a rapid transverse Marangoni-driven flow, we derive a one-dimensional model for surfactant evolution, which allows us to predict the drag reduction across the parameter space. The system exhibits multiple regimes, involving competition between Marangoni effects, bulk and interfacial diffusion, advection and shear dispersion. We map out asymptotic regions in the high-dimensional parameter space, deriving approximations of the drag reduction in each region and comparing them to numerical simulations. Our atlas of maps provides a comprehensive analytical guide for designing surfactant-contaminated channels with SHSs, to maximise the drag reduction in applications.

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