论文标题

Milhichels水溶液系统的流体动力学研究

Hydrodynamic studies of aqueous two-phase systems in millichannels

论文作者

Gande, Vamsi Vikram, K, Hima Nandini, Korukonda, Jagadeesh, Pushpavanam, S

论文摘要

在纳米颗粒合成的背景下,已经对微通道中的液态液分段流进行了广泛研究。 SLUG中的增强混合会导致单分散的颗粒。早期的研究集中在有机水系统(OAS)上。在存在有机溶液的情况下合成的纳米颗粒的应用有限。可以使用水性两相系统(ATP)开发合成的替代绿色途径。这些系统的特征是界面张力,它们比典型的有机水系统低两个数量级。在这项工作中,研究了ATP的流动模式和流体动力学作为第一步。选择聚乙烯甘油三钠系统作为ATP。这项工作的目的是查看ATPS系统中是否出现任何新物理学。低界面张力导致微流体系统中的毛细血管数(Ca >> 3)。因此,此处观察到的流量是平行的或核心的。但是,在Millichannel中,ATPS系统的毛细血管数变得较低(Ca << 1)。在这项工作中,实验是在毫米通道中进行的,以跨越不同的流动模式。分析了模式形成并分为三类,即slug流(界面张力主导),过渡流和核心环流(惯性主导)。基于雷诺数,毛细血管数和每个阶段的韦伯数的流程度图在质量上与OA的数字相似。对各种界面张力值进行了模拟。发现界面张力值为1.25x10-4 N/m,可产生与实验数据非常适合的sl尺尺寸。通过实验测量薄膜厚度,并进行了对OAS文献中可用的相关性进行有利的比较。

Liquid-liquid segmented flows in microchannels have been extensively investigated in the context of nanoparticle synthesis. The enhanced mixing in the slugs results in monodispersed particles. Earlier studies have focused on Organic-Aqueous Systems (OAS). The nanoparticles synthesized in the presence of organic solutions have limited applications. An alternative green route for the synthesis can be developed using an Aqueous Two-Phase System (ATPS). These systems are characterized by interfacial tensions, which are two orders of magnitude lower than typical organic aqueous systems. In this work, flow patterns and hydrodynamics of ATPS are investigated as a first step. Polyethylene glycol -trisodium citrate system was chosen as ATPS. The objective of this work is to see if any new physics arises in an ATPS system. The low interfacial tension results in high Capillary numbers (Ca >> 3) in a microfluidic system. Consequently, the flow observed here is parallel or core-annular. However, in a millichannel, the capillary number becomes lower (Ca << 1) for an ATPS system. In this work, experiments were carried out in a millichannel to span different flow patterns. The pattern formation was analyzed and classified into three categories, i.e., slug flow (interfacial tension dominated), transition flow, and core annular flow (inertia dominated). Flow regime maps based on the Reynolds number, Capillary number, and Weber number of each phase were found to be qualitatively similar to those of OAS. Simulations were performed for various interfacial tension values. An interfacial tension value of 1.25x10-4 N/m was found to yield slug sizes which fitted well with the experimental data. Film thickness was measured experimentally and with simulations compared favorably with the correlations available in the literature for OAS.

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