基于关键周期路径失稳的电渗透流动完全混沌混合

R. Chabreyrie, C. Chandre, P. Singh, N. Aubry
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引用次数: 11

摘要

产生完全或几乎完全的混沌混合的能力在许多应用中都是非常有趣的,特别是在微流体中。为此,我们提出了一种策略,使我们能够快速地确定发生完全混合的参数值。该技术应用于具有空间和时间变化的Helmoltz-Smoluchowski滑移边界条件的时间周期二维电渗透流。该策略包括跟踪参数空间中一些关键周期路径(即强迫的振幅和频率)的线性稳定性,特别是通过这些路径变得不稳定的分岔点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Complete Chaotic Mixing in an Electro-osmotic Flow by Destabilization of Key Periodic Pathlines
The ability to generate complete, or almost complete, chaotic mixing is of great interest in numerous applications, particularly for microfluidics. For this purpose, we propose a strategy that allows us to quickly target the parameter values at which complete mixing occurs. The technique is applied to a time periodic, two-dimensional electro-osmotic flow with spatially and temporally varying Helmoltz-Smoluchowski slip boundary conditions. The strategy consists of following the linear stability of some key periodic pathlines in parameter space (i.e., amplitude and frequency of the forcing), particularly through the bifurcation points at which such pathlines become unstable.
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