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Oscillations of weakly viscous conducting liquid drops in a strong magnetic field

机译:弱粘性导电液滴在强磁场中的振荡

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摘要

We analyse small-amplitude oscillations of a weakly viscous electrically conducting liquid drop in a strong uniform DC magnetic field. An asymptotic solution is obtained showing that the magnetic field does not affect the shape eigenmodes, which remain the spherical harmonics as in the non-magnetic case. A strong magnetic field, however, constrains the liquid flow associated with the oscillations and, thus, reduces the oscillation frequencies by increasing effective inertia of the liquid. In such a field, liquid oscillates in a two-dimensional (2D) way as solid columns aligned with the field. Two types of oscillations are possible: longitudinal and transversal to the field. Such oscillations are weakly damped by a strong magnetic field – the stronger the field, the weaker the damping, except for the axisymmetric transversal and inherently 2D modes. The former are overdamped because of being incompatible with the incompressibility constraint, whereas the latter are not affected at all because of being naturally invariant along the field. Since the magnetic damping for all other modes decreases inversely with the square of the field strength, viscous damping may become important in a sufficiently strong magnetic field. The viscous damping is found analytically by a simple energy dissipation approach which is shown for the longitudinal modes to be equivalent to a much more complicated eigenvalue perturbation technique. This study provides a theoretical basis for the development of new measurement methods of surface tension, viscosity and the electrical conductivity of liquid metals using the oscillating drop technique in a strong superimposed DC magnetic field.
机译:我们分析了在均匀的强DC磁场中弱粘性导电液滴的小振幅振荡。得到一个渐近解,表明磁场不影响形状本征模,形状本征模像非磁性情况一样保留了球谐函数。但是,强磁场会限制与振荡相关的液体流动,从而通过增加液体的有效惯性来降低振荡频率。在这样的场中,液体以二维(2D)的方式振荡,因为实心柱与该场对齐。两种类型的振荡都是可能的:纵向和横向振荡。这样的振荡会被强磁场弱衰减–磁场越强,阻尼越弱,除了轴对称横向和固有的2D模式。前者由于与不可压缩性约束不兼容而被过度阻尼,而后者则由于沿田间自然不变而根本不受影响。由于所有其他模式的磁阻尼都与场强的平方成反比,因此在足够强的磁场中,粘性阻尼可能变得很重要。通过简单的能量耗散方法可以找到粘性阻尼,对于纵向模式,该耗散方法显示为等效于更复杂的特征值摄动技术。该研究为在强叠加直流磁场中使用振荡滴技术开发液体金属的表面张力,粘度和电导率的新测量方法提供了理论基础。

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    Priede J.;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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