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Spreading of a ferrofluid core in three-stream micromixer channels

机译:铁磁流体芯在三流微混合器通道中的扩散

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摘要

Spreading of a water based ferrofluid core, cladded by a diamagnetic fluid, in three-stream micromixer channels was studied. This spreading, induced by an external magnetic field, is known as magnetofluidic spreading (MFS). MFS is useful for various novel applications where control of fluid-fluid interface is desired, such as micromixers or micro-chemical reactors. However, fundamental aspects of MFS are still unclear, and a model without correction factors is lacking. Hence, in this work, both experimental and numerical analyses were undertaken to study MFS. We show that MFS increased for higher applied magnetic fields, slower flow speed of both fluids, smaller flow rate of ferrofluid relative to cladding, and higher initial magnetic particle concentration. Spreading, mainly due to connective diffusion, was observed mostly near the channel walls. Our multi-physics model, which combines magnetic and fluidic analyses, showed, for the first time, excellent agreement between theory and experiment. These results can be useful for lab-on-a-chip devices. (C) 2015 AIP Publishing LLC.
机译:研究了三流微混合器通道中水基铁磁流体芯(由抗磁流体包裹)的扩散。由外部磁场引起的这种扩展称为磁流体扩展(MFS)。 MFS可用于需要控制流体-流体界面的各种新​​型应用,例如微型混合器或微型化学反应器。但是,MFS的基本方面仍不清楚,缺乏缺乏校正因素的模型。因此,在这项工作中,进行了实验和数值分析以研究MFS。我们显示出,对于更高的施加磁场,两种流体的流速较慢,相对于包层的铁磁流体流速较小以及初始磁粉浓度较高的情况,MFS都会增加。主要由于结缔扩散导致的扩散,主要在通道壁附近观察到。我们的多物理场模型结合了磁学和流体学分析,首次证明了理论与实验之间的卓越一致性。这些结果对于片上实验室设备很有用。 (C)2015 AIP Publishing LLC。

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