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Magnetohydrodynamic shear instabilities arising from interacting vorticity waves

机译:磁力动力学剪切不置于相互作用波浪的造型

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The presence of a background magnetic field is known to have a stabilising as well as a destabilising effect for shear flow instabilities. To explain the reason for this, we extend the Counter-propagating Rossby Waves mechanism, well known in the geophysical fluid dynamics community, to the magnetohydrodynamic setting. It is demonstrated here that wave displacement leads to a magnetic field configuration that results in an appropriate vorticity distribution, and, via the non-local velocity field generated by the local vorticity anomalies, action-at-a-distance results in a constructive interaction between two waves and leads to shear instability. The existence of shear instability then rests upon whether the chosen basic state supports such a configuration required for constructive interference.
机译:已知背景磁场的存在具有稳定性以及用于剪切流动不稳定性的不稳定效果。为了解释这一点,我们将反传播的罗斯比波机构延伸,在地球物理流体动力学界中众所周知,磁力流体动力学设置。这里证明了波位移导致磁场配置导致造成适当的涡流分布,并且通过局部涡度异常产生的非局部速度场,距离与距离之间的动作相互作用导致两个波浪并导致剪切不稳定。剪切不稳定性的存在然后休息,以便选择所选择的基本状态是否支持建设性干扰所需的这种配置。

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