论文标题

在时间依赖外场的影响下,铁氟滴的磁性混合

Magnetofluidic mixing of a ferrofluid droplet under the influence of time-dependent external field

论文作者

Shyam, Sudip, Mondal, Pranab Kumar, Mehta, Balkrishna

论文摘要

我们报告了关于在开放表面微流体平台上存在时间依赖的磁场的情况下将铁氟液滴与非磁性流体混合的实验研究。亮场可视化技术与微PIV分析结合使用,以探索铁氟滴的内部流体动力学。同样,使用激光诱导的荧光(Micro-LIF)技术,我们量化了两个液滴之间发生的传质,这实际上确定了在施加磁场频率调制的调制下的基本混合性能。我们表明,磁性纳米颗粒在时间依赖性磁场的影响下表现出复杂的时空运动,这反过来又促进了对流混合方案中的混合效率。我们的分析表明,在时间周期场的存在下,磁性纳米颗粒的运动增强了界面不稳定性,在当前情况下,它像是一种火花药物,可以引发增强混合。通过进行数值模拟,我们还回顾了界面不稳定性的发作,这主要是由于磁性和非磁性流体之间的敏感性不匹配而引起的。本分析的推论集中在简单,无线,健壮和低成本的开放表面微分机制上,将为快速液滴混合提供潜在的解决方案,而无需流体的pH水平或离子浓度依赖性。

We report the experimental investigations on the mixing of a ferrofluid droplet with a non-magnetic fluid in the presence of a time-dependent magnetic field on an open surface microfluidic platform. The bright field visualization technique, in combination with the micro-PIV analysis, is carried out to explore the internal hydrodynamics of the ferrofluid droplet. Also, using the Laser-induced fluorescence (micro-LIF) technique, we quantify the mass transfer occurring between the two droplets, which in effect, determines the underlying mixing performance under the modulation of the frequency of the applied magnetic field. We show that the magnetic nanoparticles exhibit complex spatio-temporal movement inside the ferrofluid droplet domain under the influence of a time-dependent magnetic field, which, in turn, promotes the mixing efficiency in the convective mixing regime. Our analysis establishes that the movement of magnetic nanoparticles in presence of the time-periodic field strengthens the interfacial instability, which acts like a sparking agent to initiate an augmented mixing in the present scenario. By performing numerical simulations, we also review the onset of interfacial instability, mainly stemming from the susceptibility mismatch between the magnetic and non-magnetic fluids. Inferences of the present analysis, which focuses on the simple, wireless, robust, and low-cost open surface micromixing mechanism, will provide a potential solution for rapid droplets mixing without requiring pH level or ion concentration dependency of the fluids.

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