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Modelling droplet motion and interfacial tension in filters collecting liquid aerosols

机译:模拟收集液体气溶胶的过滤器中的液滴运动和界面张力

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Extensive experimental investigations have shown some of the differences between the behaviours of the barrel and the clamshell shapes of droplets on filter fibres in flow fields. Realistic flow velocities (such as those used in many industrial filter systems) were utilised. The forces acting are air drag, interfacial tension and gravity. The properties of the interfacial restoring force are modelled, and show agreement with the experimental results, at least in the linear extension region before the onset of oscillatory behaviour of the droplets (induced by instability of the flow field). The model for the oscillatory behaviour is explored, and the natural frequencies of oscillation in the radial and transverse directions are shown to be the same, for the barrel shape. The clamshell shape also has the same natural frequencies, but they are different to those of the barrel shape. The coupling of the radial and transverse oscillation modes is explored for both the barrel and clamshell shape. Some contact angle results are given, both without airflow acting on the droplet and with increasing airflow.
机译:广泛的实验研究表明,在流场中,桶的行为与过滤纤维上液滴的翻盖形状之间存在一些差异。利用了现实的流速(例如在许多工业过滤系统中使用的流速)。作用力是空气阻力,界面张力和重力。对界面恢复力的特性进行建模,并且至少在液滴发生振荡行为之前(由流场的不稳定性引起),至少在线性延伸区域中与实验结果吻合。探索了振动行为的模型,并显示了桶形的径向和横向振动的固有频率是相同的。翻盖形状也具有相同的固有频率,但与桶形的固有频率不同。研究了桶形和蛤壳形的径向和横向振荡模式的耦合。给出了一些接触角结果,既没有气流作用在液滴上,又随着气流的增加而变化。

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