English

Fokker-Planck Kinetic description of small-scale fluid turbulence for classical incompressible fluids

Fluid Dynamics 2009-11-13 v1 Computational Physics

Abstract

Extending the statistical approach proposed in a parallel paper \cite% {Tessarotto2008-aa}, purpose of this work is to propose a stochastic inverse kinetic theory for small-scale hydrodynamic turbulence based on the introduction of a suitable \textit{local phase-space probability density function} (pdf). In particular, we pose the problem of the construction of Fokker-Planck kinetic models of hydrodynamic turbulence. The approach here adopted is based on the so-called IKT approach (inverse kinetic theory), developed by Ellero et al. (2004-2008) which permits an exact phase-space description of incompressible fluids based on the adoption of a local pdf. We intend to show that for prescribed models of stochasticity the present approach permits to determine uniquely the time evolution of the stochastic fluid fields. The stochastic-averaged local pdf is shown to obey a kinetic equation which, although generally non-Markovian, locally in velocity-space can be approximated by means of a suitable Fokker-planck kinetic equation. As a side result, the same pdf is proven to have generally a non-Gaussian behavior.

Keywords

Cite

@article{arxiv.0806.4931,
  title  = {Fokker-Planck Kinetic description of small-scale fluid turbulence for classical incompressible fluids},
  author = {M. Tessarotto and M. Ellero and D. Sarmah and P. Nicolini},
  journal= {arXiv preprint arXiv:0806.4931},
  year   = {2009}
}

Comments

Contributed paper at RGD26 (Kyoto, Japan, July 2008)