English

Spectral analysis of structure functions and their scaling exponents in forced isotropic turbulence

Fluid Dynamics 2014-11-25 v2

Abstract

The pseudospectral method, in conjunction with a new technique for obtaining scaling exponents ζn\zeta_n from the structure functions Sn(r)S_n(r), is presented as an alternative to the extended self-similarity (ESS) method and the use of generalized structure functions. We propose plotting the ratio Sn(r)/S3(r)|S_n(r)/S_3(r)| against the separation rr in accordance with a standard technique for analysing experimental data. This method differs from the ESS technique, which plots Sn(r)S_n(r) against S3(r)S_3(r), with the assumption S3(r)rS_3(r) \sim r. Using our method for the particular case of S2(r)S_2(r) we obtain the new result that the exponent ζ2\zeta_2 decreases as the Taylor-Reynolds number increases, with ζ20.679±0.013\zeta_2 \to 0.679 \pm 0.013 as RλR_{\lambda} \to \infty. This supports the idea of finite-viscosity corrections to the K41 prediction for S2S_2, and is the opposite of the result obtained by ESS. The pseudospectral method also permits the forcing to be taken into account exactly through the calculation of the energy input in real space from the work spectrum of the stirring forces.

Keywords

Cite

@article{arxiv.1408.0539,
  title  = {Spectral analysis of structure functions and their scaling exponents in forced isotropic turbulence},
  author = {W. D. McComb and S. R. Yoffe and M. F. Linkmann and A. Berera},
  journal= {arXiv preprint arXiv:1408.0539},
  year   = {2014}
}

Comments

31 pages including appendices, 10 figures