在导电流体的非均匀旋转层中由热磁效应产生的磁场

IF 0.7 Q3 PHYSICS, MULTIDISCIPLINARY Journal of Physical Studies Pub Date : 2021-04-21 DOI:10.30970/JPS.25.2401
M. Kopp, K. Kulik, A. Tur, V. Yanovsky
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引用次数: 1

摘要

本文研究了热磁不稳定性在有限厚度的导电流体非均匀旋转层中产生磁场的问题。这种不稳定性是由温度梯度$\nabla T_0$和热电动势系数梯度$\nabla\alpha $引起的。建立了在垂直恒定磁场${\bf{B}}_0 \| {\rm OZ}$存在下,TM不稳定性产生的环向磁场对导电流体非均匀旋转层对流不稳定性的影响。将微扰理论方法应用于稳态瑞利数$\textrm {Ra}_c$超临界小参数$ \epsilon = \sqrt {(\textrm {Ra}-\textrm {Ra}_c) / \textrm {Ra}_c} $,得到了金兹堡-朗道型非线性方程。这个方程描述了有限振幅扰动的演化。该方程的数值解可以确定有和没有TM效应时流体层内的换热情况。结果表明,考虑TM效应后,静止环向磁场的振幅显著增大。
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Generation of magnetic fields by thermomagnetic effects in a nonuniformly rotating layer of an electrically conductive fluid
In this paper, the generation of magnetic fields in a nonuniformly rotating layer of finite thickness of an electrically conducting fluid by thermomagnetic (TM) instability. This instability arises due to the temperature gradient $\nabla T_0$ and thermoelectromotive coefficient gradient $\nabla\alpha $. The influence of the generation of a toroidal magnetic field by TM instability on convective instability in a nonuniformly rotating layer of an electrically conductive fluid in the presence of a vertical constant magnetic field ${\bf{B}}_0 \| {\rm OZ}$ is established. As a result of applying the method of perturbation theory for the small parameter $ \epsilon = \sqrt {(\textrm {Ra}-\textrm {Ra}_c) / \textrm {Ra}_c} $ of supercriticality of the stationary Rayleigh number $\textrm {Ra}_c$ a nonlinear equation of the Ginzburg-Landau type was obtained. This equation describes the evolution of the finite amplitude of perturbations. Numerical solutions of this equation made it possible to determine the heat transfer in the fluid layer with and without TM effects. It is shown that the amplitude of the stationary toroidal magnetic field noticeably increases with allowance for TM effects.
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来源期刊
Journal of Physical Studies
Journal of Physical Studies PHYSICS, MULTIDISCIPLINARY-
CiteScore
1.00
自引率
20.00%
发文量
19
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