English

An improved $\eps$ expansion for three-dimensional turbulence: two-loop renormalization near two dimensions

Chaotic Dynamics 2007-05-23 v1

Abstract

An improved \eps\eps expansion in the dd-dimensional (d>2d > 2) stochastic theory of turbulence is constructed at two-loop order which incorporates the effect of pole singularities at d2d \to 2 in coefficients of the \eps\eps expansion of universal quantities. For a proper account of the effect of these singularities two different approaches to the renormalization of the powerlike correlation function of the random force are analyzed near two dimensions. By direct calculation it is shown that the approach based on the mere renormalization of the nonlocal correlation function leads to contradictions at two-loop order. On the other hand, a two-loop calculation in the renormalization scheme with the addition to the force correlation function of a local term to be renormalized instead of the nonlocal one yields consistent results in accordance with the UV renormalization theory. The latter renormalization prescription is used for the two-loop renormalization-group analysis amended with partial resummation of the pole singularities near two dimensions leading to a significant improvement of the agreement with experimental results for the Kolmogorov constant.

Keywords

Cite

@article{arxiv.nlin/0407067,
  title  = {An improved $\eps$ expansion for three-dimensional turbulence: two-loop renormalization near two dimensions},
  author = {L. Ts. Adzhemyan and J. Honkonen and M. V. Kompaniets and A. N. Vasil'ev},
  journal= {arXiv preprint arXiv:nlin/0407067},
  year   = {2007}
}

Comments

23 pages, 2 figures

R2 v1 2026-07-22T18:12:36.852Z