info:eu-repo/semantics/article
Flow of a thin liquid film coating a horizontal stationary cylinder
Fecha
2013-12Registro en:
Cachile, Mario Andres; Aguirre, Maria Alejandra; Lenschen, M.; Calvo, Adriana Lelia; Flow of a thin liquid film coating a horizontal stationary cylinder; American Physical Society; Physical Review E: Statistical, Nonlinear and Soft Matter Physics; 88; 6; 12-2013; 63005-63011
1539-3755
2470-0053
CONICET Digital
CONICET
Autor
Cachile, Mario Andres
Aguirre, Maria Alejandra
Lenschen, M.
Calvo, Adriana Lelia
Resumen
An experimental and theoretical study of the flow of liquid films around a stationary horizontal cylinder is reported. The film presents two different behaviors: The flow is stable in the upper zone (up to aprox. 150 degrees with the vertical) and Rayleigh-Taylor-like instabilities appear in the lower zone. For the stable region, film thickness evolution could be described by numerically integrating an evolution equation obtained using a lubrication approximation. For the unstable region, a linear stability analysis allows us to determine the maximum growth wavelength for the Rayleigh-Taylor instability. Approximate analytical solutions were obtained for generatrices at an angle with the vertical theta = 0 (stable region) and theta = 180 degrees (where the instability appears).