English

Statistical features of freely decaying two-dimensional hydrodynamic turbulence

Fluid Dynamics 2015-06-12 v1 Pattern Formation and Solitons Computational Physics Geophysics

Abstract

Statistical characteristics of freely decaying two-dimensional hydrodynamic turbulence at high Reynolds numbers are numerically studied. In particular, numerical experiments (with resolution up to 8192×81928192\times 8192) provide a Kraichnan-type turbulence spectrum Ekk3E_k\sim k^{-3}. By means of spatial filtration, it is found that the main contribution to the spectrum comes from the sharp vorticity gradients in the form of quasi-shocks. Such quasi-singularities are responsible for a strong angular dependence of the spectrum owing to well-localized (in terms of the angle) jets with minor and/or large overlapping. In each jet, the spectrum decreases as k3k^{-3}. The behavior of the third-order structure function accurately agrees with Kraichnan direct cascade concept corresponding to a constant enstrophy flux. It is shown that the power law exponents ζn\zeta_n for higher structure functions grow more slowly than the linear dependence of nn, which testifies to turbulence intermittency.

Keywords

Cite

@article{arxiv.1301.6477,
  title  = {Statistical features of freely decaying two-dimensional hydrodynamic turbulence},
  author = {A. N. Kudryavtsev and E. A. Kuznetsov and E. V. Sereshchenko},
  journal= {arXiv preprint arXiv:1301.6477},
  year   = {2015}
}

Comments

7 pages, 10 figures

R2 v1 2026-06-21T23:16:15.350Z