Conserved Dynamics and Interface Roughening in Spontaneous Imbibition : A Phase Field Model
Abstract
The propagation and roughening of a fluid-gas interface through a disordered medium in the case of capillary driven spontaneous imbibition is considered. The system is described by a conserved (model B) phase-field model, with the structure of the disordered medium appearing as a quenched random field . The flow of liquid into the medium is obtained by imposing a non-equilibrium boundary condition on the chemical potential, which reproduces Washburn's equation for the slowing down motion of the average interface position . The interface is found to be superrough, with global roughness exponent , indicating anomalous scaling. The spatial extent of the roughness is determined by a length scale arising from the conservation law. The interface advances by avalanche motion, which causes temporal multiscaling and qualitatively reproduces the experimental results of Horv\a'ath and Stanley [Phys. Rev. E {\bf 52} 5166 (1995)] on the temporal scaling of the interface.
Cite
@article{arxiv.cond-mat/0008460,
title = {Conserved Dynamics and Interface Roughening in Spontaneous Imbibition : A Phase Field Model},
author = {M. Dube and M. Rost and K. R. Elder and M. Alava and S. Majaniemi and T. Ala-Nissila},
journal= {arXiv preprint arXiv:cond-mat/0008460},
year = {2009}
}
Comments
14 pages, 13 figures