2021
2021
Fluids
Vol. 6 · No. 1 · Article 13
ISSN 2311-5521
moving mesh, surface tension, corrugated micro channels, Arbitrary Lagrangian--Eulerian, two-phase flows, porous media
COPPE/UFRJ · Department of Mechanical Engineering
Gustavo R. Anjos
2021
Fluids
Vol. 6 · No. 1 · Article 13
ISSN 2311-5521
moving mesh, surface tension, corrugated micro channels, Arbitrary Lagrangian--Eulerian, two-phase flows, porous media
This work aims at investigating numerically the effects of channel corrugation in two-phase flows with single and multiples drops subject to buoyancy-driven motion. A state-of-the-art model is employed to accurately compute the dynamics of the drop’s interface deformation using a modern moving frame/moving mesh technique within the arbitrary Lagrangian-Eulerian framework, which allows one to simulate very large domains. The results reveal a complex and interesting dynamics when more than one drop is present in the system, leading eventually in coalescence due to the amplitude of the corrugated sinusoidal channel and distance between drops.