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Drop penetration through a constriction: effect of surrounding fluid

机译:通过收缩渗透渗透:周围流体的影响

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In this study, we examine the effect of surrounding liquid on the motion of gravity-driven drops through a roundedged circular orifice using high-speed visualization and refractive index matched PIV. The overall motion of the drop is separated into three stages: pre-impact, penetration and release. We show that in liquid/liquid systems, the surrounding fluid influences the drop velocity during both pre-impact and release stages. During the pre-impact stage, the drop approaches the orifice by displacing the surrounding liquid radially across the plate as well as axially through the orifice. During the release stage on the other hand, surrounding fluid is drawn downward into the orifice as the drop exits below the plate. In both cases, the drop decelerates due to added mass and viscous effects, which are negligible in liquid/gas flows. Drop breakup is promoted by a higher viscosity surrounding such that the volume of the satellite drop increases when the drop-to-surrounding-fluid viscosity ratio is decreased.
机译:在这项研究中,我们通过使用高速可视化和折射率匹配PIV来检查周围液体通过圆形圆形孔的重力驱动液滴运动的影响。下降的总体运动分为三个阶段:预冲击,渗透和释放。我们表明,在液体/液体系统中,周围的流体在预冲击和释放阶段期间影响下降速度。在预冲击阶段期间,通过将周围的液体径向穿过板,轴向轴向通过孔口沿轴向轴向轴向轴向接近孔口。另一方面,在释放阶段,随着板下面的液滴离开,周围流体向下绘制到孔口中。在这两种情况下,由于含糊的质量和粘性效果,液滴减少,液体/气体流动可忽略不计。通过较高的粘度围绕掉液滴促进滴剂,使得当静止流体粘度比减小时卫星液滴的体积增加。

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