Vibrational dynamics of confined granular materials

Emilien Azéma, Farhang Radjaï, Robert Peyroux, Frédéric Dubois, and Gilles Saussine
Phys. Rev. E 74, 031302 – Published 13 September 2006

Abstract

By means of two-dimensional contact dynamics simulations, we analyze the vibrational dynamics of a confined granular layer in response to harmonic forcing. We use irregular polygonal grains allowing for strong variability of solid fraction. The system involves a jammed state separating passive (loading) and active (unloading) states. We show that an approximate expression of the packing resistance force as a function of the displacement of the free retaining wall from the jamming position provides a good description of the dynamics. We study in detail the scaling of displacements and velocities with loading parameters. In particular, we find that, for a wide range of frequencies, the data collapse by scaling the displacements with the inverse square of frequency, the inverse of the force amplitude, and the square of gravity. Interestingly, compaction occurs during the extension of the packing, followed by decompaction in the contraction phase. We show that the mean compaction rate increases linearly with frequency up to a characteristic frequency and then it declines in inverse proportion to frequency. The characteristic frequency is interpreted in terms of the time required for the relaxation of the packing through collective grain rearrangements between two equilibrium states.

  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
12 More
  • Received 22 April 2006

DOI:https://doi.org/10.1103/PhysRevE.74.031302

©2006 American Physical Society

Authors & Affiliations

Emilien Azéma*, Farhang Radjaï, Robert Peyroux, and Frédéric Dubois

  • LMGC, CNRS - Université Montpellier II, Place Eugène Bataillon, 34095 Montpellier Cedex 05, France

Gilles Saussine

  • Physics of Railway Systems, Innovation and Research Department of SNCF, 45 rue de Londres, 75379 Paris Cedex 08, France*

  • *Electronic address: azema@lmgc.univ-montp2.fr

Article Text (Subscription Required)

Click to Expand

References (Subscription Required)

Click to Expand
Issue

Vol. 74, Iss. 3 — September 2006

Reuse & Permissions
Access Options
Author publication services for translation and copyediting assistance advertisement

Authorization Required


×
×

Images

×

Sign up to receive regular email alerts from Physical Review E

Log In

Cancel
×

Search


Article Lookup

Paste a citation or DOI

Enter a citation
×