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Solitary wave trains in granular chains: Experiments, theory and simulations

  • Stéphane Job
  • , Francisco Melo
  • , Adam Sokolow
  • , Surajit Sen
  • SUPMECA
  • Universidad de Chile
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

162 Scopus citations

Abstract

The features of solitary waves observed in horizontal monodisperse chain of barely touching beads not only depend on geometrical and material properties of the beads but also on the initial perturbation provided at the edge of the chain. An impact of a large striker on a monodisperse chain, and similarly a sharp decrease of bead radius in a stepped chain, generates a solitary wave train containing many single solitary waves ordered by decreasing amplitudes. We find, by simple analytical arguments, that the unloading of compression force at the chain edge has a nearly exponential decrease. The characteristic time is mainly a function involving the grains' masses and the striker mass. Numerical calculations and experiments corroborate these findings.

Original languageEnglish
Pages (from-to)13-20
Number of pages8
JournalGranular Matter
Volume10
Issue number1
DOIs
StatePublished - Dec 2007

Keywords

  • One-dimensional granular chain
  • Pulses train formation
  • Solitary wave
  • Stepped chain

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