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Solar variations in extremely low frequency propagation parameters : 1. A two-dimensional telegraph equation (TDTE) model of ELF propagation and fundamental parameters of Schumann resonances

机译:太阳在极低频传播参数中的变化:1. ELF传播的二维电报方程(TDTE)模型和Schumann共振的基本参数

摘要

The primary purpose of the research presented is to study solar variations in extremely low frequency (ELF) propagation parameters using Schumann resonance (SR) data from our irregular observations carried out in the East Carpathian mountains. The natural electromagnetic ELF fields in the Earth-ionosphere cavity (the global resonator) are strongly dependent on its resonance and propagation properties as well as on the global thunderstorm activity. Thus a determination of the global resonator parameters from Schumann resonances needs information about such signal properties, which depend only on physical conditions of the Earth-ionosphere cavity. To seek such signal properties, we consider the two-dimensional telegraph equation (TDTE) approach for describing propagation of ELF electromagnetic waves in a two-dimensional spherical transmission line model of the Earth-ionosphere cavity. We have set up a model consisting of a network of finite, homogeneous, one-dimensional transmission lines covering the sphere; with the square root dependence of the attenuation rate from frequency as a sufficient model for the study of the solar influence on global properties of the Earth-ionosphere cavity. Using this model, we have constructed useful formulae and algorithms connecting the observed parameters of Schumann resonances with the attenuation rate. This enables us to study the solar influence on the attenuation rate from diurnal observations of the NS-magnetic component of the ELF field measured at one station. As the measurements were carried out during both the minimum and the maximum of the solar cycle 23, we present in the work of Kuequation imageak et al. [2003] evidence for a change in the ELF attenuation rate in the Earth-ionosphere cavity with solar activity.
机译:提出这项研究的主要目的是使用我们在东喀尔巴阡山脉进行的不规则观测中的舒曼共振(SR)数据,研究极低频(ELF)传播参数中的太阳变化。地球电离层腔(全球共振器)中的自然电磁ELF场强烈依赖于其共振和传播特性以及全球雷暴活动。因此,从舒曼共振确定全局共振器参数需要有关这种信号特性的信息,该信息仅取决于地球电离层空腔的物理条件。为了寻求这种信号特性,我们考虑使用二维电报方程(TDTE)方法来描述ELF电磁波在地球电离层空腔的二维球形传输线模型中的传播。我们建立了一个模型,该模型由覆盖球体的有限,均匀,一维传输线网络组成;用频率衰减率的平方根依赖性作为研究太阳对地球电离层空腔整体特性影响的充分模型。使用这个模型,我们构造了有用的公式和算法,将观察到的舒曼共振参数与衰减率联系起来。这使我们能够通过对一站测量的ELF场的NS磁性分量进行每日观测来研究太阳对衰减率的影响。由于测量是在太阳周期23的最小值和最大值期间进行的,因此我们介绍了Kuequation imageak等人的工作。 [2003]证据表明,随着太阳活动,电离层腔内ELF衰减率发生了变化。

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