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On the predominance of oblique disturbances in the supersonic shear flow instability of the geomagnetic tail boundary

机译:地磁尾边界超音速剪切流不稳定性中斜向扰动的优势

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A study is made of the influence of the longitudinal magnetic field and density inhomogeneity on the supersonic shear flow instability at the magnetospheric tail boundary. It is shown that the most unstable are slow oblique (3D) disturbances, with a phase velocity approaching at a sufficiently large angle (with respect to the flow direction) the magnetosonic velocity. Their growth rate and spectral width are much larger than those of the usually considered longitudinal (2D) supersonic disturbances. The magnetic field reduces the compressibility effect and, unlike the subsonic case, has a noticeable destabilizing effect on the excitation of oblique disturbances.
机译:研究了纵向磁场和密度不均匀性对磁层尾部边界超音速剪切流不稳定性的影响。结果表明,最不稳定的是缓慢的倾斜(3D)扰动,其相速度以足够大的角度(相对于流动方向)接近磁速。它们的生长速率和频谱宽度比通常认为的纵向(2D)超声速扰动要大得多。磁场降低了可压缩性,并且与亚音速情况不同,磁场对倾斜干扰的激发具有明显的去稳定作用。

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