Spatial and temporal coarse graining for dispersion in randomly packed spheres.

Phys Rev Lett

Schlumberger-Doll Research, Old Quarry Road, Ridgefield, Connecticut 06877, USA.

Published: December 2002

The propagator for molecular displacements P(zeta, t) and its first three cumulants were measured for Stokes flow in monodisperse bead packs with different sphere sizes d and molecular diffusion coefficients D(m). We systematically varied the normalized mean displacement /d and diffusion length L(D)=sqrt[2D(m)t]/d. The experimental results map onto each other with this scaling. For L(D)/d<0.2 the propagator remains non-Gaussian, and thus an advection diffusion equation is not obeyed, for mean displacements measured up to >10d. A Gaussian shape is approached for large mean displacements when L(D)>0.3d.

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http://dx.doi.org/10.1103/PhysRevLett.89.254501DOI Listing

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