Title :
Numerical simulation of bulk solitons in elongated shells
Author :
A. G. Shvartz;A. M. Samsonov;I. V. Semenova;G. V. Dreiden
Author_Institution :
Ioffe Institute, 26 Polytekhnicheskaya, St. Petersburg 194021, Russia
fDate :
5/1/2015 12:00:00 AM
Abstract :
A mathematical model, proposed recently to describe longitudinal waves in the nonlinearly elastic thin-walled cylindrical shell, is used to derive an equation for the longitudinal strain component in case of variable geometrical and physical properties of the shell. To solve the Cauchy problem for this equation the finite difference scheme is proposed, that satisfies the conservation laws of “pseudo-mass” and “pseudo-energy” for a solitary wave solution. A numerical simulation, based on this scheme, is performed to study evolution of the strain soliton in a cylindrical shell with variations of both cross section of the shell and the physical properties of the material.
Keywords :
"Mathematical model","Solitons","Strain","Stress","Diffraction","Numerical simulation","Numerical models"
Conference_Titel :
Days on Diffraction (DD), 2015
Print_ISBN :
978-1-4673-8635-7
DOI :
10.1109/DD.2015.7354881