Viscous fingering in liquid crystals: Anisotropy and morphological transitions


Autoria(s): Folch Manzanares, Roger; Casademunt i Viader, Jaume; Hernández Machado, Aurora
Contribuinte(s)

Universitat de Barcelona

Data(s)

26/07/2011

Resumo

We show that a minimal model for viscous fingering with a nematic liquid crystal in which anisotropy is considered to enter through two different viscosities in two perpendicular directions can be mapped to a twofold anisotropy in the surface tension. We numerically integrate the dynamics of the resulting problem with the phase-field approach to find and characterize a transition between tip splitting and side branching as a function of both anisotropy and dimensionless surface tension. This anisotropy dependence could explain the experimentally observed (reentrant) transition as temperature and applied pressure are varied. Our observations are also consistent with previous experimental evidence in viscous fingering within an etched cell and simulations of solidification.

Identificador

http://hdl.handle.net/2445/18739

Idioma(s)

eng

Publicador

The American Physical Society

Direitos

(c) The American Physical Society, 2000

Palavras-Chave #Dinàmica de fluids #Cristal·lografia #Ciència dels materials #Física de l'estat sòlid #Fluid dynamics #Crystallography #Materials science #Solid state physics
Tipo

info:eu-repo/semantics/article