DYNAMICS OF MAGNETIC FIELDS IN A HIGHLY CONDUCTING TURBULENT MEDIUM AND THE GENERALIZED KOLMOGOROV-FOKKER-PLANCK EQUATIONS.

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作者
Vainshtein, S.I. [1 ]
Kichatinov, L.L. [1 ]
机构
[1] Siberian Inst of Terrestrial, Magnetism, Ionosphere & Radio, Wave Propagation, Irkutsk, USSR, Siberian Inst of Terrestrial Magnetism, Ionosphere & Radio Wave Propagation, Irkutsk, USSR
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DYNAMICS; -; Analysis; FLUIDS; KINETICS; PROBABILITY;
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摘要
It is shown that a consideration of the magnetic field in a highly conducting turbulent medium, using Lagrange variables, involves deriving kinetic equations of fluid-particle transition probability densities. A derivation of such equations is performed for joint probability densities of n particles up to n equals 4. By assuming normality of one particle distribution function it was found that these kinetic equations are the generalized Kolmogorov-Fokker-Planck (KFP) equations. The dynamics of mean and fluctuating magnetic fields is described by means of these equations. The eddy diffusivity of a mean field for processes described by generalized KFP equations coincides with that of a scalar field (depending in general on helicity in implicit form). It is shown that at sufficiently large magnetic Reynolds number, a turbulence with any spectrum generates fluctuating magnetic fields.
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页码:73 / 87
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