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Viscous interface instability supporting free-surface currents in a hydromagnetic rotating fluid column

机译:粘性界面不稳定性支持水磁旋转流体柱中的自由表面电流

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摘要

The stabilization of a viscous interface stressed by an oscillating magnetic field is investigated. Account is taken of the influence of free-surface currents on the effective solidly rotating fluid column. Only azimuthal modes are considered in the linear perturbation. The dispersion relation with or without free-surface currents is obtained in the form of a linear Mathieu equation with complex coefficients. It is found that there is a nonlinear relation between the surface current density and both the stratified viscosity and the stratified azimuthal magnetic field. The surface currents disappear on the interface of the fluid column when the stratified magnetic field has the value of unity. At this value, a coupled parametric resonance occurs in the absence of angular velocity. The magnetic field plays a stabilizing role. This role increases with increasing surface currents. The angular velocity plays a destabilizing role, which the field frequency plays a stabilizing role and acts against the angular velocity. The stratified viscosity plays a damping role in the presence of the surface current density, while, in the absence of a surface current, it plays two opposite roles corresponding to the presence or absence of the field frequency. A set of graphs are used to illustrate the relation between the presence of free-surface currents and both the viscosity and the azimuthal magnetic field.
机译:研究了由振荡磁场引起的粘性界面的稳定性。考虑了自由表面电流对有效旋转固体柱的影响。在线性摄动中仅考虑方位模。有或没有自由表面电流的色散关系以具有复杂系数的线性Mathieu方程的形式获得。发现表面电流密度与分层粘度和分层方位磁场两者之间存在非线性关系。当分层磁场具有单位值时,表面电流在流体柱的界面上消失。在该值下,在不存在角速度的情况下会发生耦合参数共振。磁场起稳定作用。该作用随着表面电流的增加而增加。角速度起稳定作用,而磁场频率起稳定作用并与角速度相反。分层粘度在存在表面电流密度的情况下起阻尼作用,而在不存在表面电流的情况下,其起与存在或不存在场频相对应的两个相反的作用。一组图形用于说明自由表面电流的存在与粘度和方位磁场之间的关系。

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