Two-particle dispersion in model two-dimensional velocity fields |
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Authors: | I.M. Sokolov |
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Affiliation: | Theoretische Polymerphysik, Universit?t Freiburg, Hermann-Herder-Str. 3, 79104 Freiburg, Germany, DE
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Abstract: | We consider two-particle dispersion in a velocity field, where the relative two-point velocity scales according to v 2(r) ∝r α and the corresponding correlation time scales as τ(r) ∝r β, and fix α = 2/3, as typical for turbulent flows. We show that two generic types of dispersion behavior arize: For α/2 + β < 1 the correlations in relative velocities decouple and the diffusion approximation holds. In the opposite case, α/2 + β > 1, the relative motion is strongly correlated. The case of Kolmogorov flows corresponds to a marginal, nongeneric situation. In this case, depending on the particular parameters of the flow, the dispersion behavior can be rather diffusive or rather ballistic. Received 13 March 2001 |
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Keywords: | PACS. 05.40.-a Fluctuation phenomena, random processes, noise, and Brownian motion – 47.27.Qb Turbulent diffusion |
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