Relative dispersion in fully developed turbulence: The Richardson's Law and Intermittency Corrections
Academic Article
Publication Date:
2002
abstract:
Relative dispersion in fully developed turbulence is investigated by means
of direct numerical simulations. Lagrangian statistics is found to be
compatible with Richardson description although small systematic deviations
are found. The value of the Richardson constant is estimated as $C_2 \simeq
0.55$, in a close agreement with recent experimental findings [S. Ott and
J. Mann J. Fluid Mech. {\bf 422}, 207 (2000)]. By means of exit-time
statistics it is shown that the deviations from Richardson's law are a
consequence of Eulerian intermittency. The measured Lagrangian scaling
exponents require a set of Eulerian structure function exponents $\zeta
_{p}$ which are remarkably close to standard ones known for fully developed
turbulence.
Iris type:
01.01 Articolo in rivista
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