成核
润湿
冷凝
格子Boltzmann方法
材料科学
质量分数
质量通量
热力学
支柱
机械
复合材料
物理
结构工程
工程类
作者
Mingjie Li,Jinjia Wei,Wen‐Quan Tao
标识
DOI:10.1080/10407782.2020.1848311
摘要
Dropwise condensation on rough surfaces enhanced with pillars in the presence of non-condensable gas (NCG) including the initial nucleation process is simulated using the multispecies multiphase lattice Boltzmann method, and the effect of mass fraction of NCG, the surface wettability, the bottom wall temperature and the geometrical parameter (the pillar height H) on condensation process are investigated. It's found that these four factors all have an effect on the nucleation position, waiting time, condensate behaviors, and the wetting state of the droplet. With higher values of NCG mass fraction, surface hydrophobicity, pillar height H, and lower bottom wall temperature, the nucleation occurs on top of the pillars and the waiting time before nucleation gets longer. It's also concluded that the wetting state of the droplet tends to be the Cassie state, and the average heat flux gets smaller with higher values of the former three parameters and lower bottom wall temperature.
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