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A simulation and theoretical study of energy transport in the event of MHD Kelvin-Helmholtz instability

机译:MHD Kelvin-Helmholtz不稳定性事件中能量传输的模拟和理论研究

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摘要

Surface waves developed from the Kelvin-Helmholtz (K-H) instability perturb the ambient plasma and radiate waves that extract surface-wave energy. In magnetohydrodynamic (MHD) plasma, the fast-mode waves can propagate across the magnetic field lines. The fast-mode waves emitted from the surface perturbations should play an important role in transporting the surface-wave energy away from the velocity shear layer. Thus, the energy transported by the K-H instability should not be confined near the velocity shear layer. In this study, energy transport in the events of K-H instabilities is studied by the two-dimensional MHD simulation. Our simulation results indicate that most of the energy flux is confined in the vicinity of the velocity shear layer when the fast-mode Mach number of the surface wave is less than one. However, a small amount of the surface-wave energy is transported away from the velocity shear layer by the fast-mode waves. A considerable amount of the surface-wave energy is transported away from the velocity shear layer with the expanding of the fast-mode Mach-cone-like plane waves when the fast-mode Mach number of the surface wave is greater than one. It is shown that the fast-mode Mach-cone-like plane waves can transport the surface-wave energy away from the velocity shear layer efficiently. In this study, we also find that the energy transport velocity obtained from our simulation results is approximately equal to the group velocity of the fast-mode wave. Applications of our simulation results to the magnetosphere are also discussed.
机译:由开尔文-亥姆霍兹(K-H)不稳定性产生的表面波会扰动周围的等离子体,并辐射出提取表面波能量的波。在磁流体动力学(MHD)等离子体中,快速模式波可以在磁力线上传播。从表面扰动发出的快速模式波应该在将表面波能量从速度剪切层转移出去方面起重要作用。因此,由K-H不稳定性传输的能量不应限制在速度剪切层附近。在这项研究中,通过二维MHD模拟研究K-H不稳定性事件中的能量传输。我们的仿真结果表明,当表面波的快速模马赫数小于1时,大部分能量通量被限制在速度剪切层附近。但是,少量的表面波能量被快速模式波从速度剪切层传输走了。当表面波的快速模马赫数大于1时,随着快速模马赫锥状平面波的扩展,大量的表面波能量从速度剪切层传输走。结果表明,快速模式的马赫锥状平面波可以有效地将表面波能量从速度剪切层传输出去。在这项研究中,我们还发现从我们的仿真结果中获得的能量传输速度大约等于快模波的群速度。还讨论了我们的模拟结果在磁层中的应用。

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