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Evaporation-induced flow around a pendant droplet and its influence on evaporation
Published in American Institute of Physics Inc.
2015
Volume: 27
   
Issue: 11
Abstract
Studies on the evaporation of suspended microlitre droplets under atmospheric conditions have observed faster evaporation rates than the theoretical diffusion-driven rate, especially for rapidly evaporating droplets such as ethanol. Convective flow inside rapidly evaporating droplets has also been reported in the literature. The surrounding gas around the evaporating droplet has, however, been considered to be quiescent in many studies, the validity of which can be questioned. In the present work, we try to answer this question by direct experimental observation of the flow. The possible causes of such a flow are also explored. © 2015 AIP Publishing LLC.
About the journal
JournalData powered by TypesetPhysics of Fluids
PublisherData powered by TypesetAmerican Institute of Physics Inc.
ISSN10706631
Open AccessNo
Concepts (8)
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    Drops
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    Evaporation
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    Atmospheric conditions
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    CONVECTIVE FLOW
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    DIFFUSION DRIVEN
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    Evaporation rate
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    Induced flows
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    Heat convection