English

Isotropization of two-dimensional hydrodynamic turbulence in the direct cascade

Fluid Dynamics 2017-05-24 v1 Computational Physics Geophysics Plasma Physics

Abstract

We present results of numerical simulation of the direct cascade in two-dimensional hydrodynamic turbulence (with spatial resolution up to 16384×1638416384 \times 16384). If at the earlier stage (at the time of order of the inverse pumping growth rate τΓmax1\tau\sim\Gamma_{max}^{-1}), the turbulence develops according to the same scenario as in the case of a freely decaying turbulence \cite{KNNR-07, KKS}: quasi-singular distributions of di-vorticity are formed, which in kk-space correspond to jets, leading to a strong turbulence anisotropy, then for times of the order of 10τ10\tau turbulence becomes almost isotropic. In particular, at these times any significant anisotropy in the angular fluctuations for the energy spectrum (for a fixed kk) is not visible, while the probability distribution function of vorticity for large arguments has the exponential tail with the exponent linearly dependent on vorticity, in the agreement with the theoretical prediction \cite{FalkovichLebedev2011}.

Keywords

Cite

@article{arxiv.1702.00738,
  title  = {Isotropization of two-dimensional hydrodynamic turbulence in the direct cascade},
  author = {E. A. Kuznetsov and E. V. Sereshchenko},
  journal= {arXiv preprint arXiv:1702.00738},
  year   = {2017}
}

Comments

7 pages, 13 figures