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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Modeling Microscale Electro-thermally Induced Vortex Flows

机译:APS -70TH流体动力学APS划分的年会 - 事件 - 建模微米电热引起涡流流动

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In presence of a high frequency alternating electric field and a laser induced heat source, vortex flows are generated inside micro-channels. Such electro-thermally influenced micro-vortices can be used for manipulating nano-particles, programming colloidal assemblies, trapping biological cells as well as for fabricating designed bacterial biofilms. In this study, a theoretical model is developed for microscale electro-thermally induced vortex flows with multiple heat sources. Semi-analytical solutions are obtained, using Hankel transformation and linear superposition, for the temperature, pressure and velocity fields. The effect of material properties such as electrical and thermal conductivities, as well as experimental parameters such as the frequency and strength of the alternating electric field, and the intensity and heating profile of the laser source, are systematically investigated. Resolution for a pair of laser sources is determined by analyzing the strength of the micro-vortices under the influence of two heating sources. Results from this work will provide useful insights into the design of efficient optical tweezers and Rapid Electrokinetic Patterning techniques.
机译:在高频交流电场和激光诱导的热源存在下,在微通道内产生涡流流。这种电热影响的微涡旋可用于操纵纳米粒子,编程胶体组件,捕获生物细胞以及制造设计的细菌生物膜。在该研究中,为微观电尺寸电热诱导涡流开发了理论模型,具有多个热源。使用Hankel转换和线性叠加获得半分析溶液,用于温度,压力和速度场。系统地研究了材料特性如电力和热导体的影响,以及诸如交流电场的频率和强度的实验参数,以及激光源的强度和加热谱。通过在两个加热源的影响下分析微涡旋的强度来确定一对激光源的分辨率。这项工作的结果将为有效的光学镊子和快速电动图案化技术提供有用的见解。

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