초소수성 표면 위 단일 액적의 초기 접촉 조건에 따른 점핑현상연구

Numerical Study of Single Droplet Jumping on Superhydrophobic Surface with Different Initial Contact Conditions

초록

Droplet jumping process on superhydrophobic surface draw quite an attention lately for extending the duration of dropwise condensation which enhance the heat transfer considerably compared to filmwise condensation. Most researches so far have been focused on analyzing the behavior of merged droplets. During the phase change, higher temperature gradient can be expected near the wall thus interface movement from condensation effect could be much greater compared to the top. This would increase the asymmetry of the surface which will induce drop jumping process. In this paper, we will focus on single droplet jumping from initial asymmetric geometry on superhydrophobic surface. To see the clear distinction of the initial geometric effect, only hydraulic part of the simulation was considered. Interface was numerically tracked by Level Contour Reconstruction Method. Effect from initial contact angle and radius of the droplet was analyzed based on related energy changes during the process. Droplet jumping occurs when the initial contact angle is lower than approximately 120o. We also found that lower initial contact angle has high conversion rate for the kinetic energy thus exhibiting higher jumping velocity. And lowering the radius is also resulting in higher jumping velocity.

키워드

액적점핑초소수성 표면초기접촉각수치해석에너지 분석Droplet JumpingSuperhydrophobic SurfaceInitial Contact AngleNumerical AnalysisEnergy Analysis
제목
초소수성 표면 위 단일 액적의 초기 접촉 조건에 따른 점핑현상연구
제목 (타언어)
Numerical Study of Single Droplet Jumping on Superhydrophobic Surface with Different Initial Contact Conditions
저자
최해찬신승원
DOI
10.6112/kscfe.2017.22.4.109
발행일
2017
저널명
한국전산유체공학회지
22
4
페이지
109 ~ 115