Dynamic mesh refinement for discrete models of jet electro-hydrodynamics
Computational Physics
2016-05-30 v2 Fluid Dynamics
Abstract
Nowadays, several models of unidimensional fluid jets exploit discrete element methods. In some cases, as for models aiming at describing the electrospinning nanofabrication process of polymer fibers, discrete element methods suffer a non constant resolution of the jet representation. We develop a dynamic mesh-refinement method for the numerical study of the electro-hydrodynamic behavior of charged jets using discrete element methods. To this purpose, we import ideas and techniques from the string method originally developed in the framework of free-energy landscape simulations. The mesh-refined discrete element method is demonstrated for the case of electrospinning applications.
Cite
@article{arxiv.1511.08375,
title = {Dynamic mesh refinement for discrete models of jet electro-hydrodynamics},
author = {Marco Lauricella and Giuseppe Pontrelli and Dario Pisignano and Sauro Succi},
journal= {arXiv preprint arXiv:1511.08375},
year = {2016}
}
Comments
16 pages, 7 figures in Journal of Computational Science, 2016