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A lattice Boltzmann simulation of oblique impact of a single rain droplet on super-hydrophobic surface with randomly distributed rough structures

机译:随机分布粗糙结构对单液压表面上单雨液液滴的斜撞击晶格玻璃晶片模拟

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In this paper, oblique impact of a single rain droplet on super-hydrophobic surface with randomly distributed rough structures was investigated by lattice Boltzmann method. The effects of the impact angle of the droplet as well as the skewness and kurtosis of rough surface on the bouncing ability of the droplet were in this paper. It was found that the oblique impact can effectively reduce the contact time in the process of droplet bouncing off, because the energy consumption caused by the pinning effect is reduced. Moreover, the contact time most possibly reaches the shortest when the impact angle is 45°. Decreasing the skewness and keeping the kurtosis around 4.0 can enhance the bouncing ability during the droplet oblique impact on randomly distributed rough surfaces. The results are useful for the design of building structures.
机译:本文采用格子Boltzmann方法研究了单次雨液对随机分布粗糙结构的超疏水表面的倾斜影响。本文提出了液滴冲击角和粗糙表面粗糙表面的偏光和峰度的影响。结果发现,倾斜的冲击可以有效地降低液滴的过程中的接触时间,因为钉扎效果引起的能量消耗降低。此外,当冲击角为45°时,接触时间可能达到最短。减少偏离和保持刚性病程约4.0可以在液滴斜撞击期间提高对随机分布的粗糙表面的撞击能力。结果对于建筑结构的设计是有用的。

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