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Sustaining dry surfaces under water

Authors :
Jones, Paul R.
Hao, Xiuqing
Cruz-Chu, Eduardo R.
Rykaczewski, Konrad
Nandy, Krishanu
Schutzius, Thomas M.
Varanasi, Kripa K.
Megaridis, Constantine M.
Walther, Jens Honore
Koumoutsakos, Petros
Espinosa, Horacio D.
Patankar, Neelesh
Jones, Paul R.
Hao, Xiuqing
Cruz-Chu, Eduardo R.
Rykaczewski, Konrad
Nandy, Krishanu
Schutzius, Thomas M.
Varanasi, Kripa K.
Megaridis, Constantine M.
Walther, Jens Honore
Koumoutsakos, Petros
Espinosa, Horacio D.
Patankar, Neelesh
Source :
Jones , P R , Hao , X , Cruz-Chu , E R , Rykaczewski , K , Nandy , K , Schutzius , T M , Varanasi , K K , Megaridis , C M , Walther , J H , Koumoutsakos , P , Espinosa , H D & Patankar , N 2015 , ' Sustaining dry surfaces under water ' , Scientific Reports , vol. 5 , 12311 .
Publication Year :
2015

Abstract

Rough surfaces immersed under water remain practically dry if the liquid-solid contact is on roughness peaks, while the roughness valleys are filled with gas. Mechanisms that prevent water from invading the valleys are well studied. However, to remain practically dry under water, additional mechanisms need consideration. This is because trapped gas (e.g. air) in the roughness valleys can dissolve into the water pool, leading to invasion. Additionally, water vapor can also occupy the roughness valleys of immersed surfaces. If water vapor condenses, that too leads to invasion. These effects have not been investigated, and are critically important to maintain surfaces dry under water.In this work, we identify the critical roughness scale, below which it is possible to sustain the vapor phase of water and/or trapped gases in roughness valleys – thus keeping the immersed surface dry. Theoretical predictions are consistent with molecular dynamics simulations and experiments.

Details

Database :
OAIster
Journal :
Jones , P R , Hao , X , Cruz-Chu , E R , Rykaczewski , K , Nandy , K , Schutzius , T M , Varanasi , K K , Megaridis , C M , Walther , J H , Koumoutsakos , P , Espinosa , H D & Patankar , N 2015 , ' Sustaining dry surfaces under water ' , Scientific Reports , vol. 5 , 12311 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn927120068
Document Type :
Electronic Resource