Retraction dynamics of droplets impacting face masks with different roughness거칠기가 다른 마스크 표면에 충돌한 액적의 수축 거동

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dc.contributor.advisorKim, Hyoungsoo-
dc.contributor.advisor김형수-
dc.contributor.authorJo, Ara-
dc.date.accessioned2023-06-21T19:32:09Z-
dc.date.available2023-06-21T19:32:09Z-
dc.date.issued2023-
dc.identifier.urihttp://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=1033078&flag=dissertationen_US
dc.identifier.urihttp://hdl.handle.net/10203/307731-
dc.description학위논문(석사) - 한국과학기술원 : 기계공학과, 2023.2,[iii, 26 p. :]-
dc.description.abstractPhenomena of droplet impact on solid surfaces are ubiquitous in nature and have been widely explored for industrial applications, such as inkjet printing, anti-icing and spray cooling. Recently, droplet impact on a face mask has been also considered since COVID-19 pandemic. In particular, there have been various studies for evaluating the blockage of the droplets in face masks. However, there are less work for investigating the interaction between the droplet and mask surfaces. Therefore, this work provide the new view on the assessment of face masks based on understanding of the droplet impact dynamics. In this study, we experimentally studied retraction dynamics of droplets after impacting mask surfaces with different roughness and provide a prediction model based on energy analysis. The results indicates that the droplet impacting each surface shows different behaviors affected by retraction dynamics. In addition, we found the droplet impacting the rougher surface showed lower break-up threshold and the retraction dynamics highly affect the break-up phenomena as well. These findings can help understand the retraction dynamics fundamentally and provide an ideal mask surface for preventing the spread of respiratory diseases.-
dc.languageeng-
dc.publisher한국과학기술원-
dc.subjectdroplet impact▼aCOVID-19▼aface mask▼aretraction dynamics▼adroplet atomization-
dc.subject액적 충돌▼a코로나19▼a마스크▼a액적 수축 거동▼a비말 깨짐-
dc.titleRetraction dynamics of droplets impacting face masks with different roughness-
dc.title.alternative거칠기가 다른 마스크 표면에 충돌한 액적의 수축 거동-
dc.typeThesis(Master)-
dc.identifier.CNRN325007-
dc.description.department한국과학기술원 :기계공학과,-
dc.contributor.alternativeauthor조아라-
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