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Numerical and experimental study on mixing performance of a novel electro-osmotic micro-mixer

机译:一种新型电渗微混合器混合性能的数值和实验研究

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This paper presents the numerical and experimental study on mixing enhancement in a novel electro-osmotic micro-mixer in the presence of AC and DC electric fields. PDMS is used for the fabrication of the microchip and gold nanoparticles are employed to make the electrodes. It is demonstrated that the generation of vortices due to electro-osmotic force enhances the mixing quality considerably. The strength of the vortices for DC electric field is higher than that for AC one. The results reveal that the mixing performance can be controlled by the value of applied voltage and inlet velocity of the fluids for both DC and AC electric fields. It is concluded that the mixing performance improves by enhancing the applied voltage and decreasing the inlet velocity. The experimental results are in very good agreement with the numerical ones qualitatively.
机译:本文介绍了在AC和DC电场存在下新型电渗透微混合器中增强的数值和实验研究。 PDMS用于制造微芯片和金纳米颗粒以使电极制成。 证明由于电渗透力导致的涡流产生显着增强了混合质量。 直流电场的涡流的强度高于AC一体的温度。 结果表明,混合性能可以通过用于DC和AC电场的流体的施加电压和入口速度的值来控制。 得出结论,混合性能通过增强施加的电压并降低入口速度来改善。 实验结果与定性非常好。

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