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首页> 外文期刊>ACS Omega >Coalescence, Spreading, and Rebound of Two Water Droplets with Different Temperatures on a Superhydrophobic Surface
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Coalescence, Spreading, and Rebound of Two Water Droplets with Different Temperatures on a Superhydrophobic Surface

机译:超疏水表面上两个温度不同的水滴的聚结,扩散和回弹

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This paper studied the coalescence, spreading, and rebound of two droplets with different temperatures on a superhydrophobic surface. When the temperature of the impacting droplet was the same as that of the stationary droplet, there was a large deformation of both droplets before the coalescence and the energy dissipation was also large. The coalescence happened at the time close to the maximum spreading. When the temperature of the impacting droplet increased, the deformation of both droplets became smaller before the coalescence and the coalescence happened at or even before the droplets started to spread. The energy dissipation and loss in the later situation is less than those in the previous case. The rebounding characteristics of the merged droplets were also found to be dependent on the temperature. There is an optimum temperature at which the merged droplets can rebound for more times due to the balance of energy loss and also the interaction of the merged droplets with the underlying superhydrophobic substrate. These findings may help further the fundamental understanding of droplet collision on a superhydrophobic surfaces and also offer an alternative strategy to remove droplets from the underlying surfaces for different industrial applications, including condensation heat transfer in steam power plants and phase-change-based thermal management systems.
机译:本文研究了两个不同温度的液滴在超疏水表面上的聚结,扩散和回弹。当冲击液滴的温度与静止液滴的温度相同时,在聚结之前两个液滴的变形都很大,并且能量耗散也很大。合并发生在接近最大扩展的时间。当冲击液滴的温度升高时,两个液滴的变形在聚结之前发生变小,并且聚结在液滴开始扩散甚至开始扩散之前就发生了。后一种情况的能量耗散和损耗比前一种情况少。还发现合并的液滴的回弹特性取决于温度。由于能量损失的平衡以及合并的液滴与下面的超疏水性底物的相互作用,存在最佳的温度,在该温度下合并的液滴可以反弹更多次。这些发现可能有助于进一步了解超疏水表面上的液滴碰撞,并且还提供了一种替代策略,可从下面的表面去除液滴,以用于不同的工业应用,包括蒸汽电厂中的冷凝传热和基于相变的热管理系统。

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