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湍流发电机中磁能的非正态和随机放大:亚临界情况。

Non-normal and stochastic amplification of magnetic energy in the turbulent dynamo: subcritical case.

作者信息

Fedotov Sergei

机构信息

Department of Mathematics, UMIST-University of Manchester, Institute of Science and Technology, P.O. Box 88, Manchester M60 1QD, United Kingdom.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Dec;68(6 Pt 2):067301. doi: 10.1103/PhysRevE.68.067301. Epub 2003 Dec 17.

Abstract

Our attention focuses on the stochastic dynamo equation with non-normal operator that gives an insight into the role of stochastics and non-normality in magnetic field generation. The main point of this Brief Report is a discussion of the generation of a large-scale magnetic field that cannot be explained by traditional linear eigenvalue analysis. The main result is a discovery of nonlinear deterministic instability and growth of finite magnetic field fluctuations in alpha beta dynamo theory. We present a simple stochastic model for the thin-disk axisymmetric alpha Omega dynamo involving three factors: (a) non-normality generated by differential rotation, (b) nonlinearity reflecting how the magnetic field affects the turbulent dynamo coefficients, and (c) stochastic perturbations. We show that even for the subcritical case (all eigenvalues are negative), there are three possible mechanisms for the generation of magnetic field. The first mechanism is a deterministic one that describes an interplay between transient growth and nonlinear saturation of the turbulent alpha effect and diffusivity. It turns out that the trivial state is nonlinearly unstable to small but finite initial perturbations. The second and third are stochastic mechanisms that account for the interaction of non-normal effect generated by differential rotation with random additive and multiplicative fluctuations.

摘要

我们的注意力集中在具有非正规算子的随机发电机方程上,该方程有助于深入了解随机性和非正规性在磁场产生中的作用。本简短报告的重点是讨论一种无法用传统线性特征值分析来解释的大规模磁场的产生。主要结果是在α-β发电机理论中发现了非线性确定性不稳定性和有限磁场波动的增长。我们提出了一个用于薄盘轴对称α-Ω发电机的简单随机模型,该模型涉及三个因素:(a)由差动旋转产生的非正规性,(b)反映磁场如何影响湍流发电机系数的非线性,以及(c)随机扰动。我们表明,即使对于亚临界情况(所有特征值均为负),也存在三种可能的磁场产生机制。第一种机制是确定性机制,它描述了湍流α效应和扩散率的瞬态增长与非线性饱和之间的相互作用。结果表明,平凡态对小的但有限的初始扰动是非线性不稳定的。第二种和第三种是随机机制,它们解释了由差动旋转产生的非正规效应与随机加性和乘性波动之间的相互作用。

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