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首页> 外文期刊>Russian journal of physical chemistry, B. >Two-Dimensional Model of the Global Ionospheric Conductor
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Two-Dimensional Model of the Global Ionospheric Conductor

机译:全局电离层导体的二维模型

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摘要

To numerically simulate large-scale electric fields in the magnetosphere and ionosphere, the electrical conductivity problem is solved. The problem is substantially simplified due to the presence of a small parameter, the ratio of the conductivities in directions perpendicular and parallel to the magnetic field. Setting this parameter equal to zero makes magnetic field lines equipotential, so that the original three-dimensional problem reduces to a two-dimensional one. A comparison with the results of calculations performed within the framework of an alternative thin-layer model clearly demonstrates the advantages of using the conductivity anisotropy tensor rather than the smallness of the thickness of the ionosphere for constructing a two-dimensional approximation in a global simulation including the low-latitude ionosphere.
机译:为了数值模拟磁层和电离层中的大型电场,解决了电导率问题。 由于存在小参数的存在,该问题基本上简化了,导电率在垂直和平行于磁场的方向上的比率。 将此参数设置为零使磁场线等化,使原始的三维问题减少到二维之一。 与替代薄层模型的框架内执行的计算结果的比较清楚地示出了使用电导率各向异性张量而不是电离层厚度的小的优点,用于在全局模拟中构建二维近似,包括 低纬度电离层。

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