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Effect of confinement and viscosity ratio on the dynamics of single droplets during transient shear flow

机译:极限和黏度比对瞬态剪切流动过程中单个液滴动力学的影响

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摘要

The deformation and orientation of droplets during transient shear flow is studied in a counterrotating device using microscopy. The effect of the degree of confinement and viscosity ratio is systematically investigated. The system consists of polydimethylsiloxane droplets of varying sizes and viscosities dispersed in a polyisobutylene matrix. The observations are compared with the predictions of an adapted version of the Maffettone and Minale model [Maffettone, and Minale, J. Non-Newtonian Fluid Mech. 78, 227-241 (1998)] which includes confinement effects [Minale, Rheol. Acta 47, 667-675 (2008)]. For flow start-up at low capillary numbers, the deformation of confined droplets and their orientation towards the flow direction are increased with respect to the unconfined situation for all viscosity ratios under investigation. The confined model results for start-up and the experimental data at low capillary numbers are in good agreement both showing similar monotonous transients. At high degrees of confinement and high shear rates, one or more overshoots in the droplet deformation are experimentally observed, depending on the viscosity ratio. In addition, droplets become sigmoidal when highly confined. Under these conditions, the confined Maffettone and Minale model, which assumes an ellipsoidal droplet shape, cannot be used to predict the droplet behavior. The relaxation of confined droplets upon cessation of steady-state shear flow is also studied. It is experimentally observed that confinement only affects the relaxation at degrees of confinement above 60% of the gap spacing. Highly confined droplets experience a slightly slower relaxation with respect to bulk conditions. The relaxation predictions of the confined model are in rather good agreement with the experimental data.
机译:使用显微镜在反向旋转装置中研究了瞬态剪切流期间液滴的变形和取向。系统地研究了限制度和粘度比的影响。该系统由分散在聚异丁烯基质中的大小和粘度不同的聚二甲基硅氧烷液滴组成。将这些观察结果与Maffettone和Minale模型的改编版本的预测进行比较[Maffettone和Minale,J。非牛顿流体力学。 78,227-241(1998)],其中包括限制作用[Minale,Rheol。 Acta 47,667-675(2008)]。对于在低毛细管数下的流动启动,对于所研究的所有粘度比而言,相对于无限制情况而言,受限液滴的变形及其朝向流动方向的取向会增加。启动时的受限模型结果和低毛细管数下的实验数据都很好地吻合,都显示出相似的单调瞬变。在高约束度和高剪切速率下,根据粘度比,实验观察到液滴变形中的一个或多个过冲。此外,高度受限时,液滴会变成S形。在这些条件下,假设椭圆形液滴形状的受限Maffettone and Minale模型无法用于预测液滴行为。还研究了在稳态剪切流停止时约束液滴的松弛。实验观察到,限制仅影响超过间隙间距60%的限制程度的松弛。相对于整体条件,高度受限的液滴的松弛速度略慢。约束模型的松弛预测与实验数据非常吻合。

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