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Mixing enhancement of electrokinetically-driven non-Newtonian fluids in microchannel with patterned blocks

机译:电动驱动的非牛顿流体在微通道中与图案块的混合增强

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摘要

A numerical investigation is performed into the mixing characteristics of electrokinetically-driven non-Newtonian fluids in microchannels containing patterned blocks. In performing the simulations, the Theological behavior of the fluid is described using a power-law model. Two different types of patterned blocks are considered, namely rectangular and wavy. The effects of the geometry parameters of the patterned blocks and the flow behavior index in the power-law model on the mixing efficiency within the microchannel are systematically explored. The results show that the rectangular patterned blocks yield a better mixing performance than the wavy patterned blocks. However, for both types of block, the mix-ing efficiency can be improved by increasing the width and length of the blocks and extending the total length of the block region. In addition, the results show that the flow behavior index in the power-low model has a significant effect on the mixing performance. Specifically, the volumetric flow rate increases with a decreasing flow behavior index, and therefore results in a poorer mixing performance, it is shown that a heterogeneous patterning of the zeta potential on the upper surfaces of the rectangular and wavy blocks prompts the formation of local flow recirculations, and therefore improves the mixing efficiency, In addition, it is shown that the mixing performance improves with an increasing magnitude of the het i erogeneous surface zeta potential. Overall, the results show that the mixing efficiency of non-Newtonian fluids with a low flow behavior index can be improved by utilizing blocks with an appropriate geometry applying a heterogeneous distribution of the surface zeta potential, and increasing the magnitude of the zeta potential.
机译:对电动驱动的非牛顿流体在包含图案块的微通道中的混合特性进行了数值研究。在执行模拟时,使用幂律模型描述了流体的流变行为。考虑了两种不同类型的图案块,即矩形和波浪形。系统地研究了图案化块的几何参数和幂律模型中的流动行为指数对微通道内混合效率的影响。结果表明,矩形图案块比波浪形图案块具有更好的混合性能。然而,对于两种类型的块,可以通过增加块的宽度和长度并扩展块区域的总长度来提高混合效率。此外,结果表明,低功率模型中的流动行为指数对混合性能有重大影响。具体地,体积流量随着流动行为指数的降低而增加,因此导致较差的混合性能,这表明矩形和波浪形块的上表面上的ζ电势的异质图案促使局部流动的形成。再循环,因此提高了混合效率。此外,还表明,随着非均相表面ζ电势的增加,混合性能也得到改善。总体而言,结果表明,通过使用具有适当几何形状的块,应用表面zeta电位的不均匀分布并增加zeta电位的大小,可以提高具有低流动行为指数的非牛顿流体的混合效率。

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