4.6 Article

Rebound Behaviors of Multiple Droplets Simultaneously Impacting a Superhydrophobic Surface

期刊

LANGMUIR
卷 37, 期 38, 页码 11233-11241

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.langmuir.1c01490

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资金

  1. National Natural Science Foundation of China [52006068]
  2. State Key Program of National Natural Science of China [51936004]
  3. Beijing Natural Science Foundation [3212025]
  4. Fundamental Research Funds for the Central Universities [2020MS063]

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The study identified three rebound regions and three new rebound morphologies, showing that the rebound behaviors of droplets vary in different regions, which is of great significance for practical applications.
The rebound behaviors of multiple droplets simultaneously impacting a superhydrophobic surface were investigated via lattice Boltzmann method (LBM) simulations. Three rebound regions were identified, i.e., an edge-dominating region, a center-dominating region, and an independent rebound region. The occurrence of the rebound regions strongly depends on the droplet spacing and the associated Weber and Reynolds \ numbers. Three new rebound morphologies, i.e., a pin-shaped morphology, a downward comb-shaped morphology, and an upward comb-shaped morphology, were presented. Intriguingly, in the edge-dominating region, the central droplets experience a secondary wetting process to significantly prolong the contact time. However, in the center-dominating region, the contact time is dramatically shortened because of the strong interactions generated by the central droplets and the central ridges. These findings provide useful information for practical applications such as self-cleaning, anticorrosion, anti-icing, and so forth.

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