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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >On the ionospheric and reconnection potentials of the earth: Results from global MHD simulations
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On the ionospheric and reconnection potentials of the earth: Results from global MHD simulations

机译:在电离层和重新连接的潜力地球:从全球磁流体动力模拟结果

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The reconnection potential along the reconnection line provides a quantitative description of magnetic reconnection that dominates the solar wind-magnetosphere coupling. To properly determine the reconnection potential is a first and crucial step in deeply understanding magnetospheric processes. This paper proposes three methods to calculate the reconnection potential based on data obtained by global magnetohydrodynamic simulations of the Earth’s magnetosphere-ionosphere system. The simulations are limited to the due southward interplanetary magnetic field (IMF) case for simplicity. The three methods are all based on the line integration of electric field and differ in the choice of integration path, radial rays in the equatorial plane for method 1, last closed magnetic field lines for method 2, and IMF lines nearby the reconnection line for method 3. The effect of numerical diffusion of the algorithm is included approximately by an equivalent uniform resistivity. For a properly selected numerical resistivity, the three methods give answers of the reconnection potential, which are reasonably close to each other. The reconnection voltage is found to be larger than the transpolar potential, and the ratio between them increases with increasing ionospheric conductance. The fact that method 2 also gives reasonable answers means that the appearance of parallel electric field along the last closed magnetic field lines is responsible for the difference between the ionospheric and the reconnection potentials and between the transpolar potential and the reconnection voltage as well. We suggest that similar methods may be applicable to general cases with arbitrary IMF orientations.
机译:重新连接可能沿着磁力线重连行提供了定量的描述磁重联主导太阳能wind-magnetosphere耦合。确定重新连接潜力是头一遭深入理解和至关重要的一步磁性层的过程。三种方法计算重新连接基于数据获得的全球潜在磁流体动力模拟的地球magnetosphere-ionosphere系统。向南由于星际是有限的磁场(IMF)简单。三种方法都是基于线集成的电场和不同选择一体化道路,径向射线赤道平面方法1,最后关闭磁场线方法2,国际货币基金组织(IMF)线附近的重新连接方法3。算法的数值扩散的影响包括大约相等的电阻率。电阻率,三种方法给答案重新连接的潜力,合理接近对方。发现比经过北极的潜力,以及它们之间的比例增加增加电离层电导。方法2也意味着给予了合理的回答平行电场的外观最后关闭磁场线负责之间的差异电离层和重新连接的潜力经过北极的潜力和之间重新连接电压。类似的方法可以适用于一般情况下与任意货币基金组织取向。

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