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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Interaction ofmagnetic reconnection and Kelvin-Helmholtz modes for largemagnetic shear: 1. Kelvin-Helmholtz trigger
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Interaction ofmagnetic reconnection and Kelvin-Helmholtz modes for largemagnetic shear: 1. Kelvin-Helmholtz trigger

机译:交互ofmagnetic重新连接,Kelvin-Helmholtz largemagnetic剪切模式:1.

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摘要

At the Earth’s magnetopause, both magnetic reconnection and the Kelvin-Helmholtz (KH) instability can operate simultaneously for southward interplanetary magnetic field conditions. The dynamic evolution of such a system can be expected to depend on the importance of KH wave evolution versus reconnection and therefore on the respective initial perturbations. In this study, a series of local three-dimensional MHD and Hall MHD simulations are carried out to investigate the situation where the Kelvin-Helmholtz instability is initially the primary process. It is demonstrated that magnetic reconnection is driven and strongly modified by nonlinear KH waves. The highest reconnection rate is close to the Petschek rate, but the total open flux is limited by the size of the nonlinear KH wave. Most of the total open magnetic flux has no flux rope structure and originates from reconnection at thin current layers which connect adjacent vortices. In contrast, complex flux ropes generated by patchy reconnection within the KH vortices dominate the vicinity of the equatorial plane; however, the associated open flux with flux ropes is a minor contribution to the total open flux. Although the presence of Hall physics leads to a fast early increase of the reconnection rate, the maximum reconnection rate and the total amount of open magnetic flux at saturation are the same as in the MHD case.
机译:在地球的磁层,两个磁重新连接和Kelvin-Helmholtz (KH)不稳定可以同时操作向南行星际磁场条件。系统可以将取决于KH波演化与重要性重新连接,因此在各自的初始扰动。当地的霍尔三维磁流体动力和磁流体动力模拟进行调查Kelvin-Helmholtz不稳定的情形最初的主要过程。证明驱动磁场重联通过非线性KH电波和强烈的修改。重联率接近最高Petschek率,但总通量是有限的通过非线性KH波的大小。打开总磁通没有通量绳结构和源于重新连接当前的薄层连接相邻漩涡。在KH由片状重新连接赤道附近的漩涡占据主导地位飞机;总通量绳是一个小的贡献开放的通量。导致早期快速增加的重联率,最大的重联率和开放的磁通量的总量在磁流体动力情况下饱和是一样的。

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