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The influence of resonant MHD wave coupling in the boundary layer on the reflection and transmission process

机译:边界层共振MHD波耦合对反射和透射过程的影响

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摘要

When a wave is incident on an inhomogeneous boundary layer separating two plasmas in relative motion, it is often argued that the resonant absorption rate can become negative when there is a sufficiently large velocity shear, thus giving energy back to the wave. However such treatment fails to distinguish the two energy exchange processes that are operative: extraction of wave energy by dissipative processes around the resonance point and energy exchange between the wave and the ow of the medium. By aid of the proper wave energy definitions recently discussed by Walker (2000), rather than by the conventional concept of "negative energy" waves we reveal the important dependence of the resonant amplification process on the precise structure of the boundary layer profiles. We conclude that stratification in boundary layers is very important not only because the resulting wave coupling can cause resonant instabilities for velocity shears below the Kelvin-Helmholtz threshold, but also because the coupling can stabilize the Kelvin-Helmholtz instability above this threshold.
机译:通常认为,当波入射到将两个等离子体以相对运动分开的不均匀边界层上时,如果存在足够大的速度剪切,则共振吸收率可能会变为负值,从而将能量返回给波。然而,这种处理不能区分两个有效的能量交换过程:通过共振点附近的耗散过程提取波能,以及波与介质流之间的能量交换。通过Walker(2000)最近讨论的适当的波能定义,而不是通过传统的“负能”波概念,我们揭示了共振放大过程对边界层轮廓精确结构的重要依赖。我们得出结论,边界层的分层非常重要,这不仅是因为所产生的波耦合会导致开尔文-亥姆霍兹阈值以下的速度剪切产生共振不稳定性,而且因为耦合能够使开尔文-亥姆霍兹阈值以上的不稳定性稳定下来。

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