Velocity statistics in excited granular media
Author(s) -
Wolfgang Losert,
Dennis Cooper,
J. Delour,
Arshad Kudrolli,
J. P. Gollub
Publication year - 1999
Publication title -
chaos an interdisciplinary journal of nonlinear science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.971
H-Index - 113
eISSN - 1089-7682
pISSN - 1054-1500
DOI - 10.1063/1.166442
Subject(s) - physics , range (aeronautics) , kinetic energy , thermal velocity , particle velocity , gravitational acceleration , acceleration , particle (ecology) , boundary (topology) , particle acceleration , boundary layer , atomic physics , classical mechanics , gravitation , mechanics , flow velocity , materials science , mathematical analysis , flow (mathematics) , mathematics , oceanography , composite material , geology
We present an experimental study of velocity statistics for a partial layer of inelastic colliding beads driven by a vertically oscillating boundary. Over a wide range of parameters (accelerations 3-8 times the gravitational acceleration), the probability distribution P(v) deviates measurably from a Gaussian for the two horizontal velocity components. It can be described by P(v) approximately exp(-mid R:v/v(c)mid R:(1.5)), in agreement with a recent theory. The characteristic velocity v(c) is proportional to the peak velocity of the boundary. The granular temperature, defined as the mean square particle velocity, varies with particle density and exhibits a maximum at intermediate densities. On the other hand, for free cooling in the absence of excitation, we find an exponential velocity distribution. Finally, we examine the sharing of energy between particles of different mass. The more massive particles are found to have greater kinetic energy. (c) 1999 American Institute of Physics.
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