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ANALYSIS OF OPTICALLY INDUCED FLUID FLOWS IN ELECTRIC FIELDS

机译:电场中光诱导流动的分析

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In this paper we demonstrate opto-electrothermal pumping in a very simple setup consisting primarily of parallel electrodes and explore the characteristics of such flows with different optical intensity patterns. For our parallel electrode configuration setup, ITO-coated electrodes were used to generate electric fields. The optical illumination system uses a laser beam (continuous wave, 1,064 nm).The experiments are analyzed in terms of existing analytical models for electrothermal flows.Microvortices created using the electric field and focused laser beam resembles a sink/source type flow with the laser spot as the center of the sink/source. The flow velocity is characterized as a function of the AC signal frequency and the strength of electric field. At larger frequencies (f > 1 MHz), the velocity of the vortices decreases and around f > 5 MHz, Brownian motion dominates fluid flow.The line illumination is created by holographically stretching the point illumination. The line is about 28 μm in length. Result of this experiment is determined by means of visualization only. The creation of these vortices can not only be used to create microfluidic pumps but also also show immense promise as microfluidic mixers without utilizaing any invasive components.
机译:在本文中,我们以非常简单的设置(主要由平行电极组成)演示了光电热泵,并探索了具有不同光强模式的此类流的特性。对于我们的平行电极配置设置,使用涂有ITO的电极来产生电场。光学照明系统使用激光束(连续波,1,064 nm),并根据现有的电热流分析模型对实验进行了分析。 使用电场和聚焦激光束产生的微涡流类似于以激光点为汇/源中心的汇/源类型的流。流速的特征是交流信号频率和电场强度的函数。在较大的频率(f> 1 MHz)下,涡旋的速度降低,并且在f> 5 MHz附近,布朗运动主导着流体流动。 通过全息拉伸点照明来创建线照明。该线的长度约为28μm。该实验的结果仅通过可视化方法确定。这些涡流的产生不仅可以用于制造微流体泵,而且还可以在不利用任何侵入性成分的情况下作为微流体混合器显示出巨大的前景。

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