Characteristics of self-propelled Leidenfrost droplets on asymmetrically structured surfaces: Evidence for a self-rotation-induced propulsive mechanism

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초록

Self-propelled Leidenfrost droplets on asymmetrically structured surfaces were investigated to study their movements with temperature. It was observed that the terminal velocity is a function of temperature in the low-temperature regime (L regime) but not in the high-temperature regime (H regime). Droplets were not smooth in the L regime but were smooth in the H regime. Because of wrinkles, the light penetrating through droplets was deflected, resulting in differences in light levels in the L and H regimes. While the droplet accelerated to reach its terminal velocity when alpha = 50 degrees and alpha = 65 degrees, tiny droplets were breaking off from the trailing edge and moving opposite to the droplet's moving direction. When alpha = 80 degrees, as the droplet accelerated, it leaned forward and its leading edge stood higher than its trailing edge. The distinct shape of the droplet is strong evidence to show that the vapor underneath the droplet flows opposite to the droplet's moving direction.

키워드

Leidenfrost droplet; Self-propelled mechanism; Temperature regime; Light level; Self-rotation-induced propulsive mechanism
제목
Characteristics of self-propelled Leidenfrost droplets on asymmetrically structured surfaces: Evidence for a self-rotation-induced propulsive mechanism
저자
Jo, Daeseong
DOI
10.1007/s12206-024-0943-x
발행일
2024-10
유형
Article
저널명
Journal of Mechanical Science and Technology
권
38
호
10
페이지
5729 ~ 5735