English

Scaling Exponents in Anisotropic Hydrodynamic Turbulence

Chaotic Dynamics 2009-11-07 v2

Abstract

In anisotropic turbulence the correlation functions are decomposed in the irreducible representations of the SO(3) symmetry group (with different "angular momenta" \ell). For different values of \ell the second order correlation function is characterized by different scaling exponents ζ2()\zeta_2(\ell). In this paper we compute these scaling exponents in a Direct Interaction Approximation (DIA). By linearizing the DIA equations in small anisotropy we set up a linear operator and find its zero-modes in the inertial interval of scales. Thus the scaling exponents in each \ell-sector follow from solvability condition, and are not determined by dimensional analysis. The main result of our calculation is that the scaling exponents ζ2()\zeta_2(\ell) form a strictly increasing spectrum at least until =6\ell=6, guaranteeing that the effects of anisotropy decay as power laws when the scale of observation diminishes. The results of our calculations are compared to available experiments and simulations.

Keywords

Cite

@article{arxiv.nlin/0207011,
  title  = {Scaling Exponents in Anisotropic Hydrodynamic Turbulence},
  author = {Victor S. L'vov and Itamar Procaccia and Vasil Tiberkevich},
  journal= {arXiv preprint arXiv:nlin/0207011},
  year   = {2009}
}

Comments

10 pages, 4 figures, PRE submitted. Fixed problems with figures

R2 v1 2026-07-22T18:09:43.777Z