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Observation and modelling of barrel droplets on vertical fibres subjected to gravitational and drag forces

机译:重力和拖曳力作用下垂直纤维上桶状液滴的观察和建模

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摘要

Extensive experimental investigation of the wetting processes of fibre/liquid systems during air filtration (when drag and gravitational forces are acting) has shown many important features, including droplet extension, oscillatory motion, and detachment or flow of drops from fibres as airflow velocity increases. A detailed experimental study of the aforementioned processes was conducted using glass filter fibres and H2O aerosol, which coalesce on the fibre to form barrel droplets with small contact angles. The droplets were predominantly observed in the Reynolds transition (or unsteady laminar) flow region. The droplet oscillation appears to be induced by the onset of vortexes in the flow field around the droplet as the increasing droplet size increases the Reynolds number. Flow in this region is usually modelled using the classical two-dimensional Karman vortex street, and there exist no 3D equivalents. Therefore to model such oscillation it was necessary to create a new conceptual model to account for the forces both inducing and inhibiting such oscillation. The agreement between the model and experimental results is acceptable for both the radial and transverse oscillations.
机译:在空气过滤过程中(当阻力和重力作用时)纤维/液体系统的润湿过程进行了广泛的实验研究,结果显示出许多重要的特征,包括液滴的延伸,振荡运动以及随着气流速度的增加,液滴从纤维上分离或流动。使用玻璃滤嘴纤维和H2O气雾剂对上述过程进行了详细的实验研究,它们在纤维上聚集成小接触角的桶状液滴。主要在雷诺过渡(或不稳定的层流)流动区域中观察到液滴。随着液滴尺寸的增加,雷诺数的增加,液滴振荡似乎是由液滴周围流场中的涡流的产生引起的。通常使用经典的二维Karman涡街模拟该区域中的流动,并且不存在3D等效项。因此,为了对这种振动进行建模,有必要创建一个新的概念模型来考虑引起和抑制这种振动的力。对于径向和横向振动,模型和实验结果之间的一致性是可以接受的。

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