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Variation of the Contact Time of Droplets Bouncing on Cylindrical Ridges with Ridge Size

机译:脊尺寸圆柱脊上撞击液滴接触时间的变化

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摘要

Reducing the contact time between bouncing droplets and an underlying solid surface is relevant to a broad range of industrial applications, such as anti-icing and self-cleaning. Previous work has found that placing cylindrical obstacles on the substrate leads to a reduction in contact time. For obstacles large compared to the drop, this is a result of hydrodynamic coupling between the azimuthal and axial spreading directions. For obstacles small compared to the drop, the reduction in contact time is interpreted as being due to fast retraction along the cylindrical ridge, followed by drop breakup. Here we use simulations to discuss in greater detail the effect of varying the obstacle size on the dynamics of the drop bouncing. We investigate the crossover between the two regimes and explain why the contact time is minimized when the radii of the drop and the cylindrical obstacle are comparable.
机译:减小弹跳液滴和下面的固体表面之间的接触时间与广泛的工业应用相关,例如防冰和自清洁。以前的工作发现,将圆柱形障碍放置在基板上导致接触时间的减少。对于与下降相比大的障碍物,这是方位角和轴向扩散方向之间的流体动力耦合的结果。对于障碍物与下降相比,接触时间的减小被解释为由于沿圆柱脊的快速缩回,然后脱落。在这里,我们使用模拟更详细地讨论改变障碍物尺寸对下降弹跳的动态的效果。我们研究了两种制度之间的交叉,并解释了为什么当下降的半径和圆柱形障碍物相当时最小化接触时间。

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