arXiv · 1601.03625
Finite-time Thin Film Rupture Driven by Generalized Evaporative Loss
Abstract
Rupture is a nonlinear instability resulting in a finite-time singularity as a fluid layer approaches zero thickness at a point. We study the dynamics of rupture in a generalized mathematical model of thin films of viscous fluids with evaporative effects. The governing lubrication model is a fourth-order nonlinear parabolic partial differential equation with a non-conservative loss term due to evaporation. Several different types of finite-time singularities are observed due to balances between evaporation and surface tension or intermolecular forces. Non-self-similar behavior and two classes of self-similar rupture solutions are analyzed and validated against high resolution PDE simulations.
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Hangjie Ji, Thomas Witelski. 2016-01-14. Finite-time Thin Film Rupture Driven by Generalized Evaporative Loss. https://doi.org/10.1016/j.physd.2016.10.002
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