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Fokker-Planck Kinetic Description of Small-scale Fluid Turbulence for Classical Incompressible Fluids§

机译:Fokker-Planck动力学描述的小规模液体湍流用于古典不可压缩流体

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Extending the statistical approach proposed in a parallel paper [1], purpose of this work is to propose a stochastic inverse kinetic theory for small-scale hydrodynamic turbulence based on the introduction of a suitable 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 Tessarotto 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.
机译:延长并行纸张中提出的统计方法[1],这项工作的目的是提出基于引入合适的局部相空间概率密度函数(PDF)的小规模流体动力湍流的随机逆动力学理论。特别是,我们构成了福克 - 普朗克运动动力学模型的建设问题。这里采用的方法是基于由Tessarotto等人开发的所谓的IKT方法(反动力学理论)。 (2004-2008)基于采用局部PDF,允许对不可压缩流体的精确相位空间描述。我们打算表明,对于规定的随机模型,本方法允许独特地确定随机流体田的时间演变。随机平均局部PDF被示出遵循动力学方程,虽然通常是非马尔可维夫,但是通过合适的FOKKER-PLANCK动力学方程可以近似局部空间。作为侧面结果,证明了相同的PDF通常是非高斯行为。

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