首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Nonlinear evolution of the MHD Kelvin-Helmholtz instability in a compressible plasma
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Nonlinear evolution of the MHD Kelvin-Helmholtz instability in a compressible plasma

机译:磁流体动力Kelvin-Helmholtz的非线性演化在可压缩等离子体不稳定

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Kelvin-Helmholtz (K-H) instability at a magnetohydrodynamic (MHD) tangential discontinuity (TD) is studied by means of two-dimensional MHD simulation. The TD is of finite thickness with both magnetic shear and velocity shear across the TD. Our simulation results indicate that the nonlinear evolution of MHD surface waves at the TD depends on the fast-mode Mach numbers of the plasma flows on two sides of the TD in the surface wave rest frame. When the fast-mode Mach numbers on both sides of the TD are less than 1, the K-H instability can grow into vortices or kink-type surface waves, depending on the orientation of the ambient magnetic field and the plasma beta. When the fast-mode Mach number on either side of the TD is greater than 1, nonlinear fast-mode plane waves are developed from the ridges of the surface waves and extended distance from the TD. A theoretical model based on the fast magnetosonic Mach cone formation is proposed to explain the formation of these nonlinear plane waves. The Mach angle of the fast magnetosonic Mach cone as a function of Mach number, orientation of ambient magnetic field, and plasma beta is derived. The flaring angles of these nonlinear plane waves measured from our simulation results are in good agreement with the Mach angles predicted by the theoretical model. Applications of our results to the Earth's magnetopause and to the solar wind are also discussed.
机译:Kelvin-Helmholtz (k - h)不稳定磁流体动力(磁流体动力)切线不连续(TD)的研究二维磁流体动力模拟。磁剪切和有限厚度在TD速度剪切。结果表明,非线性的演化磁流体动力在TD取决于表面波快速模式的等离子体流马赫数2TD的表面波的其他框架。当双方的快速模式马赫数TD是小于1,k - h不稳定性成长为漩涡或kink-type表面波,这取决于环境的方向磁场和等离子体β。快速模式马赫数TD的两侧大于1,飞机波浪非线性快速模式从表面的山脊开发海浪和扩展TD的距离。基于快速magnetosonic理论模型马赫锥的形成提出了解释这些飞机非线性波的形成。马赫快速magnetosonic马赫锥角马赫数的函数,取向的环境磁场和等离子体β。这些飞机非线性波的扩口角度从我们的仿真结果是良好的协议的角度预测的马赫理论模型。地球的磁层和太阳风进行了讨论。

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