Ionospheric Elementary Current Systems in Spherical Coordinates and Their Application

O. Amm
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引用次数: 193

Abstract

Two sets of basis functions in spherical coordinates are presented, in terms of which any given ionospheric current system, consisting of horizontal sheet currents and their accompanying field-aligned currents, can be expanded, regardless of any considerations on the ionospheric conductances or the electric field. The single basis functions are called elementary current systems. One basis function set is curl-free and poloidal, and causes a toroidal magnetic field that is restricted to the area above the ionosphere. The other one is divergence-free and toroidal, and causes a poloidal magnetic field which is solely responsible for the magnetic effect of ionospheric currents below the ionosphere. The field-aligned currents are assumed to flow radially. The expansion presented is used on a model of a Cowling channel to decompose its Hall and Pedersen currents into their total divergence-free and curl-free parts. This application example shows how the analysis technique based on the elementary current expansion resolves the physically relevant primary and secondary currents inside the Cowling channel.
球坐标下电离层初等电流系统及其应用
提出了球坐标下的两组基函数,根据这两组基函数,可以不考虑电离层电导率或电场,展开任何给定的电离层电流系统,该系统由水平片状电流及其伴随的场向电流组成。单基函数称为初等电流系统。一个基函数集是无旋流和极向的,并产生一个环向磁场,该磁场被限制在电离层以上的区域。另一种是无散度和环形的,并产生一个极向磁场,该磁场完全负责电离层以下电离层电流的磁效应。假定场向电流沿径向流动。将所提出的展开方法应用于一个考凌通道模型,将其霍尔电流和彼得森电流分解为无发散和无旋流两部分。这个应用实例说明了基于初等电流展开的分析技术是如何解析考凌通道内物理相关的一次电流和二次电流的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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