Experimental investigation of liquid films in gravity-driven flows with a simple visualization technique

被引:0
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作者
A. Kevin Njifenju
José Bico
Emmanuelle Andrès
P. Jenffer
Marc Fermigier
机构
[1] ESPCI-ParisTech,Physique de Mécanique des Milieux Hétérogènes
[2] UMR CNRS 7636,undefined
[3] Renault/DREAM/DTAA,undefined
[4] groupe Mécanique des Fluides et Aérodynamique,undefined
来源
Experiments in Fluids | 2013年 / 54卷
关键词
Reynolds Number; Inclination Angle; Liquid Film; Incline Plane; Critical Reynolds Number;
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学科分类号
摘要
A visualization technique based on light absorption is used to monitor the thickness profile of a liquid film flowing on an inclined plane with high spatial and temporal resolutions. Surface waves are observed for a certain range of experimental parameters as expected from the classical stability analysis from Benjamin (J Fluid Mech 2:554–574, 1957). The liquid films are found systematically thicker than predicted by Nusselt (Z Ver Dtsch Ing 60:541, 1916) in the case of ideal viscous flows. We interpret this increase in thickness as a consequence of the propagation of waves on the films. The wave dynamics are in qualitative agreement with the asymptotic development from Anshus (Ind Eng Chem Fundam 11:502–508, 1972). Although the wavelength distribution is rather broad, space-time analysis indicates a well-defined phase velocity. Representing the wave velocity of a corrected Reynolds number allows to superimpose the experimental data into a single master curve.
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