Literature DB >> 18351908

Highly nonlinear solitary waves in periodic dimer granular chains.

Mason A Porter1, Chiara Daraio, Eric B Herbold, Ivan Szelengowicz, P G Kevrekidis.   

Abstract

We investigate the propagation of highly nonlinear solitary waves in heterogeneous, periodic granular media using experiments, numerical simulations, and theoretical analysis. We examine periodic arrangements of particles in experiments in which stiffer and heavier beads (stainless steel) are alternated with softer and lighter ones (polytetrafluoroethylene beads). We find good agreement between experiments and numerics in a model with Hertzian interactions between adjacent beads, which in turn agrees very well with a theoretical analysis of the model in the long-wavelength regime that we derive for heterogeneous environments and general bead interactions. Our analysis encompasses previously studied examples as special cases and also provides key insights into the influence of the dimer lattice on the properties (width and propagation speed) of the highly nonlinear wave solutions.

Entities:  

Year:  2008        PMID: 18351908     DOI: 10.1103/PhysRevE.77.015601

Source DB:  PubMed          Journal:  Phys Rev E Stat Nonlin Soft Matter Phys        ISSN: 1539-3755


  3 in total

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Authors:  Alexander F Vakakis
Journal:  Philos Trans A Math Phys Eng Sci       Date:  2018-08-28       Impact factor: 4.226

2.  Highly Nonlinear Solitary Waves for the Assessment of Dental Implant Mobility.

Authors:  Bruk Berhanu; Piervincenzo Rizzo; Mark Ochs
Journal:  J Appl Mech       Date:  2012-11-20       Impact factor: 2.168

3.  Solitary Wave in One-dimensional Buckyball System at Nanoscale.

Authors:  Jun Xu; Bowen Zheng; Yilun Liu
Journal:  Sci Rep       Date:  2016-02-19       Impact factor: 4.379

  3 in total

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