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The surface statistics of a granular aggregate

Samuel Frederick EdwardsD. R. Wilkinson

Abstract

Abstract The problem of the surface fluctuations in a settled granular material is posed. A simple model is given which describes the process by which a particle settles and comes to rest on the existing surface of the packing and from this a set of Langevin equations for the Fourier modes of the surface are derived. These equations imply that the Fourier amplitudes behave like the velocities of a set of independent Brownian particles. We show that this results in logarithmically divergent surface fluctuations if the flux of particles onto the surface is random, the divergence being removed by a more accurate description of the settling material, for example by having the granules fall through a sieve.

Advanced Thermodynamics and Statistical MechanicsMaterial Dynamics and Propertiesstochastic dynamics and bifurcationBrownian motionSurface (topology)Aggregate (composite)Sieve (category theory)Fourier transformParticle (ecology)Granular materialSettlingAmplitudeStatistical physics
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1,502
FWCI
0.40
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2
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55%
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References
Stochastic Problems in Physics and Astronomy
Reviews of Modern Physics · 1943 · 8,430 citations
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