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Far Dissipation Range of Turbulence

chao-dyn 2009-10-22 v1 Chaotic Dynamics

Abstract

The very small scales of isotropic, Navier-Stokes turbulence at Reynolds number Rλ15{\cal R}_\lambda \approx 15 are studied by high-resolution direct numerical simulation (DNS) and by integration of the direct-interaction (DIA) equations. The DNS follows the tail of the energy spectrum over more than thirty decades of magnitude. The energy spectrum in the far-dissipation range 5kd<k<10kd5k_d < k < 10k_d is well-fitted by kαexp(ck/kd)k^\alpha\exp(-ck/k_d), where kdk_d is the Kolmogorov dissipation wavenumber, α3.3\alpha \approx 3.3 and c7.1c\approx 7.1. For values of mm that emphasize the far-dissipation range, the fields (2)mu(-\nabla^2)^m{\bf u} exhibit strong spatial intermittency, associated with gentle spatial variations of the lower-kk part of the velocity field. DIA analysis gives a prefactor k3k^3 and an exponential decay more rapid than DNS. Averaging over an ensemble of DIA solutions, suggested by the observed intermittency, removes some of the discrepancy.

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Cite

@article{arxiv.chao-dyn/9303001,
  title  = {Far Dissipation Range of Turbulence},
  author = {Shiyi Chen and Gary Doolen and Jackson R. Herring and Robert H. Kraichnan and Steven A. Orszag and Zhen Su She},
  journal= {arXiv preprint arXiv:chao-dyn/9303001},
  year   = {2009}
}

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R2 v1 2026-07-22T09:54:32.993Z