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首页> 外文期刊>Journal of Micromechanics and Microengineering >A compact model for electroosmotic flows in microfluidic devices
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A compact model for electroosmotic flows in microfluidic devices

机译:微流体装置中电渗流的紧凑模型

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摘要

A compact model to compute flow rate and pressure in microfluidic devices is presented. The microfluidic flow can be driven by either an applied electric field or a combined electric field and pressure gradient. A step change in the xi-potential on a channel wall is treated by a pressure source in the compact model. The pressure source is obtained from the pressure Poisson equation and conservation of mass principle. In the proposed compact model, the complex fluidic network is simplified by an electrical circuit. The compact model can predict the flow rate, pressure distribution and other basic characteristics in microfluidic channels quickly with good accuracy when compared to detailed numerical simulation, Using the compact model, fluidic mixing and dispersion control are studied in a complex microfluidic network. [References: 14]
机译:提出了一个紧凑的模型来计算微流体装置中的流速和压力。可以通过施加的电场或电场和压力梯度的组合来驱动微流体流。紧凑模型中的压力源处理了通道壁上xi电位的阶跃变化。从压力泊松方程和质量守恒原理获得压力源。在提出的紧凑模型中,复杂的流体网络通过电路得以简化。与详细的数值模拟相比,该紧凑模型可以快速,准确地预测微流体通道中的流量,压力分布和其他基本特征。使用紧凑模型,可以在复杂的微流体网络中研究流体混合和分散控制。 [参考:14]

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