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EFFECT OF FLUID PROPERTIES ON DROPLET GENERATION IN A MICROFLUIDIC T-JUNCTION

机译:流体性质对微流T形结中液滴生成的影响

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Over the last decade, significant work has been performed in an attempt to quantify the effect of different parameters such as flowrate, geometrical and fluid characteristics on the droplet break up mechanism in microfluidic T-Junctions. This demand is dictated by the need of tight control of the size and dispersity of the droplets generated in such geometries. Even though several researchers have investigated the effect of viscosity ratio on both the droplet break up mechanism as well as on the regime transition, fluid properties have not been included in most scaling laws. It is therefore evident that the contribution of fluid properties has not been quantified thoroughly. In the present work, the effect of fluid properties on the volume of droplets generated in a microfluidic T-junction is investigated. The main aim of this work is to examine the influence of viscosity of both the dispersed and continuous phase as well as the effect of interfacial tension on the size of droplet generated along with the break up mechanism. Three different oils have been utilised as continuous phase in this work to enable investigation of the effect of viscosity of the continuous phase with experiments performed at constant Capillary numbers. Various glycerol weight percentages have been employed to vary the viscosity of the dispersed phase fluid (water). Lastly, the effect of interfacial tension has been explored using two of the oils at constant μ_cU_c (viscous force term). High speed imaging has been utilised to visualise and measure the volume of the resulting droplets. The viscosity ratio (viscosity of dispersed phase over viscosity of continuous phase) between the two phases appears to affect the droplet generation mechanism, especially for the highest viscosity ratio employed (mineral oil-water system) where the system behaves in a noticeably different way. Influence of interfacial tension is also noticeable even though less evident. In terms of the effect of viscosity of dispersed phase on the droplet generation a small difference on the volume of the droplets generated in olive oil glycerol systems is also reported. In an attempt to enumerate the effect of fluid properties on the droplet generation mechanism in a microfluidic T-junction, this paper will present supporting evidence in detail on the above and a comparison of the findings with the existing theories.
机译:在过去的十年中,为了量化不同参数(例如流量,几何和流体特性)对微流控T型结中液滴破碎机理的影响,进行了大量工作。这种需求是由对这样的几何形状中产生的液滴的大小和分散性的严格控制的需要所决定的。即使几位研究人员已经研究了粘度比对液滴破裂机理和状态转变的影响,但大多数垢定律中并未包括流体性质。因此,很明显,流体特性的贡献还没有被完全量化。在目前的工作中,研究了流体性质对微流体T型接头中产生的液滴体积的影响。这项工作的主要目的是研究分散相和连续相的粘度的影响,以及界面张力对伴随破碎机理产生的液滴尺寸的影响。在这项工作中,三种不同的油已被用作连续相,从而能够通过在恒定毛细管数下进行的实验来研究连续相的粘度影响。已经使用各种甘油重量百分比来改变分散相流体(水)的粘度。最后,使用两种油以恒定的μ_cU_c(粘滞力项)研究了界面张力的影响。高速成像已被用于可视化和测量所得液滴的体积。两相之间的粘度比(分散相的粘度对连续相的粘度)似乎会影响液滴的产生机理,尤其是对于所采用的最高粘度比(矿物油-水系统),其系统表现方式明显不同。即使不太明显,界面张力的影响也很明显。就分散相的粘度对液滴产生的影响而言,还报道了在橄榄油甘油系统中产生的液滴体积的微小差异。为了试图枚举流体特性对微流控T型结中液滴产生机理的影响,本文将详细介绍上述证据,并将发现的结果与现有理论进行比较。

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