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Iterative Solution of the Quasicontinuum Equilibrium Equations with Continuation

Authors :
Dobson, Matthew
Luskin, Mitchell
Source :
Journal of Scientific Computing, Volume 37, 2008, 19-41
Publication Year :
2008

Abstract

We give an analysis of a continuation algorithm for the numerical solution of the force-based quasicontinuum equations. The approximate solution of the force-based quasicontinuum equations is computed by an iterative method using an energy-based quasicontinuum approximation as the preconditioner. The analysis presented in this paper is used to determine an efficient strategy for the parameter step size and number of iterations at each parameter value to achieve a solution to a required tolerance. We present computational results for the deformation of a Lennard-Jones chain under tension to demonstrate the necessity of carefully applying continuation to ensure that the computed solution remains in the domain of convergence of the iterative method as the parameter is increased. These results exhibit fracture before the actual load limit if the parameter step size is too large.<br />Comment: 22 pages, 8 figures

Details

Database :
arXiv
Journal :
Journal of Scientific Computing, Volume 37, 2008, 19-41
Publication Type :
Report
Accession number :
edsarx.0812.4843
Document Type :
Working Paper