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Título: | Numerical approach to study bubbles and drops evolving through complex geometries by using a level set - moving mesh - immersed boundary method. |
Autor: | Gutiérrez, E. Favre, Federico Balcázar, N. Amani, A. Rigola, J. |
Tipo: | Preprint |
Palabras clave: | Complex geometries, Arbitrary Lagrangian-Eulerian formulation, Level set method, Immersed boundary method, Multiphase flow, Unstructured meshes |
Fecha de publicación: | 2018 |
Resumen: | The present work proposes a method to study problems of drops and bubbles evolving in complex geometries.
First, a conservative level set (CLS) method is enforced to handle the multiphase domain while keeping the mass conservation under control. An Arbitrary Lagrangian-Eulerian (ALE) formulation is proposed to optimize the simulation domain. Thus, a moving mesh (MM) will follow the motion of the bubble, allowing the reduction of the computational domain size and the improvement of the mesh quality. This
has a direct impact on the computational resources consumption which is notably reduced. Finally, the use
of an Immersed Boundary (IB) method allows to deal with intricate geometries and to reproduce internal
boundaries within an ALE framework. The resulting method is capable of dealing with full unstructured meshes. Different problems have been studied to assert the proposed formulation, both involving constricting
and non-constricting geometries. In particular, the following problems have been addressed: a 2D gravity-
driven bubble interacting with a highly-inclined plane, a 2D gravity-driven Taylor bubble turning into a curved channel, the 3D passage of a drop through a periodically constricted channel, and the impingement of a 3D drop on a flat plate. Good agreement was found for all these cases study, which proves the suitability of the proposed CLS+MM+IB method to study this type of problems. |
Descripción: | Publicado en Chemical Engineering Journal, Vol. 349, no.1 october, 2018, p. 662-682 |
Citación: | Gutiérrez, E., Favre, F., Balcázar, N. y otros. Numerical approach to study bubbles and drops evolving through complex geometries by using a level set - moving mesh - immersed boundary method". [Preprint]. Publicado en: Chemical Engineering Journal, Vol. 349, no.1 october, 2018, p. 662-682. DOI: 10.1016/j.cej.2018.05.110 |
Aparece en las colecciones: | Publicaciones académicas y científicas - Instituto de Ingeniería Mecánica y Producción Industrial |
Ficheros en este ítem:
Fichero | Descripción | Tamaño | Formato | ||
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GFBAR18.pdf | Preprint | 1,97 MB | Adobe PDF | Visualizar/Abrir |
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