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Final fate of a Leidenfrost droplet: Explosion or takeoff

机译:莱顿弗罗斯特小滴的最终命运:爆炸或起飞

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When a liquid droplet is placed on a very hot solid, it levitates on its own vapor layer, a phenomenon called the Leidenfrost effect. Although the mechanisms governing the droplet’s levitation have been explored, not much is known about the fate of the Leidenfrost droplet. Here we report on the final stages of evaporation of Leidenfrost droplets. While initially small droplets tend to take off, unexpectedly, the initially large ones explode with a crack sound. We interpret these in the context of unavoidable droplet contaminants, which accumulate at the droplet-air interface, resulting in reduced evaporation rate, and contact with the substrate. We validate this hypothesis by introducing controlled amounts of microparticles and reveal a universal 1/3-scaling law for the dimensionless explosion radius versus contaminant fraction. Our findings open up new opportunities for controlling the duration and rate of Leidenfrost heat transfer and propulsion by tuning the droplet’s size and contamination.
机译:当液滴放在非常热的固体上时,它会悬浮在其自身的蒸汽层上,这种现象称为莱顿弗罗斯特效应。尽管已经探索了控制液滴悬浮的机制,但对莱顿弗罗斯特液滴的命运知之甚少。在这里,我们报告了莱顿弗罗斯特液滴蒸发的最后阶段。尽管最初的小液滴倾向于脱落,但出乎意料的是,最初的大液滴却以破裂的声音爆炸。我们在不可避免的液滴污染物的背景下解释这些问题,这些污染物会聚集在液滴与空气的界面处,从而导致蒸发速率降低,并与基材接触。我们通过引入受控量的微粒来验证该假设,并揭示了无量纲爆炸半径与污染物分数的通用1/3比例定律。我们的发现为调节莱顿弗罗斯特的热传递和推进的持续时间和速率提供了新的机会,方法是调节液滴的大小和污染。

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