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Electrokinetic instability micromixing

机译:电动不稳定微混合

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We have developed an electrokinetic process to rapidly stir micro- and nanoliter volume solutions for microfluidic bioanalytical applications. We rapidly stir microflow streams by initiating a flow instability, which we have observed in sinusoidally oscillating, electroosmotic channel flows. As the effect occurs within an oscillating electroosmotic flow, we refer to it here as an electrokinetic instability (EKI). The rapid stretching and folding of material fines associated with this instability can be used to stir fluid streams with Reynolds numbers of order unity, based on channel depth and rms electroosmotic velocity. This paper presents a preliminary description of the EKI and the design and fabrication of two, micromixing devices capable of rapidly stirring two fluid streams using this flow phenomenon. A high-resolution CCD camera is used to record the stirring and diffusion of fluorescein from. an initially unmixed configuration. Integration of fluorescence intensity over measurement volumes (voxels) provides a measure of the degree to which two streams are mixed to within the length scales of the voxels. Ensemble-averaged probability density functions and power spectra of the instantaneous spatial intensity profiles are used to quantify the mixing processes. Two-dimensional spectral bandwidths of the mixing images are initially anisotropic for the unmixed configuration, broaden as the stirring associated with the EKI rapidly stretches and folds material lines (adding high spatial frequencies to the concentration field), and then narrow to a relatively isotropic spectrum at the well-mixed conditions.
机译:我们已经开发出一种电动过程,可以快速搅拌微量和纳升体积的溶液,以用于微流体生物分析应用。我们通过引发流动不稳定性来快速搅动微流,这在正弦振荡的电渗通道流中已经观察到。由于这种效应发生在振荡的电渗流中,因此在这里将其称为电动不稳定性(EKI)。与这种不稳定性相关的材料细粉的快速拉伸和折叠可用于搅拌基于通道深度和均方根电渗速度的雷诺数为1的流体流。本文介绍了EKI的初步说明,以及两种利用这种流动现象能够快速搅拌两种流体的微混合装置的设计和制造。高分辨率CCD相机用于记录荧光素的搅拌和扩散。最初未混合的配置。荧光强度在测量体积(体素)上的积分提供了在体素的长度尺度内两个流混合的程度的度量。集合平均的概率密度函数和瞬时空间强度分布的功率谱用于量化混合过程。对于未混合的配置,混合图像的二维光谱带宽最初是各向异性的,随着与EKI关联的搅拌的迅速扩展和折叠,材料线会变宽(向浓度场添加高空间频率),然后变窄为相对各向同性的光谱在充分混合的条件下。

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