Drainage and lifetime of thin liquid films: the role of salinity and convective evaporation

Fuente: arXiv
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Main Authors: Aurégan, Tristan, Deike, Luc
Format: Preprint
Published: 2024
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author Aurégan, Tristan
Deike, Luc
author_facet Aurégan, Tristan
Deike, Luc
contents We experimentally investigate the effect of salinity and atmospheric humidity on the drainage and lifetime of thin liquid films motivated by conditions relevant to air-sea exchanges. We show that the drainage is independent of humidity and that the effect of a change in salinity is only reflected through the associated change in viscosity. On the other hand, film lifetime displays a strong dependence on humidity, with more than a tenfold increase between low and high humidities: from a few seconds to tens of minutes. Mixing the air surrounding the film also has a very important effect on lifetime, modifying its distribution and reducing the mean lifetime of the film. From estimations of the evaporation rate, we are able to derive scaling laws that describe well the evolution of lifetime with a change of humidity. Observations of the black film, close to the top where the film ruptures, reveal that this region is very sensitive to local humidity conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2411_03908
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Drainage and lifetime of thin liquid films: the role of salinity and convective evaporation
Aurégan, Tristan
Deike, Luc
Fluid Dynamics
We experimentally investigate the effect of salinity and atmospheric humidity on the drainage and lifetime of thin liquid films motivated by conditions relevant to air-sea exchanges. We show that the drainage is independent of humidity and that the effect of a change in salinity is only reflected through the associated change in viscosity. On the other hand, film lifetime displays a strong dependence on humidity, with more than a tenfold increase between low and high humidities: from a few seconds to tens of minutes. Mixing the air surrounding the film also has a very important effect on lifetime, modifying its distribution and reducing the mean lifetime of the film. From estimations of the evaporation rate, we are able to derive scaling laws that describe well the evolution of lifetime with a change of humidity. Observations of the black film, close to the top where the film ruptures, reveal that this region is very sensitive to local humidity conditions.
title Drainage and lifetime of thin liquid films: the role of salinity and convective evaporation
topic Fluid Dynamics
url https://arxiv.org/abs/2411.03908