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首页> 外文期刊>Izvestiya Atmospheric and Oceanic Physics >Stationary and Nonstationary Models of the Global Electric Circuit: Well-Posedness, Analytical Relations, and Numerical Implementation
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Stationary and Nonstationary Models of the Global Electric Circuit: Well-Posedness, Analytical Relations, and Numerical Implementation

机译:全局电路的固定和非固定模型:正确性,分析关系和数值实现

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摘要

We analyze the formulation of the problem of global atmospheric electric circuit modeling. It was shown that under some relatively simple and widely used simplifying assumptions this problem can be reduced to finding the temporal and spatial dependencies of the electric potential on the specified generators, which are determined by the external electric current density. They correspond to thunderclouds in the real atmosphere. The ionospheric potential (the potential difference between the upper and lower atmospheric boundaries) is not specified explicitly but can be uniquely determined from the solution. The formulations of the stationary and nonstationary problems are given in terms of the potential and their well-posedness is discussed. We obtained a number of analytical relations under some restrictions on the distribution of conductivity. They include the formulas which explicitly express the ionospheric potential in terms of the problem parameters. The examples of numerical calculations using the software developed on the basis of general formulations of the stationary and nonstationary problems are demonstrated.
机译:我们分析了全球大气电路建模问题的表述。结果表明,在一些相对简单和广泛使用的简化假设下,可以将这个问题简化为找到特定发电机上电势的时间和空间相关性,这取决于外部电流密度。它们对应于真实大气中的雷云。电离层电势(大气上下边界之间的电势差)没有明确指定,但可以从溶液中唯一确定。静态和非静态问题的表达方式均以其潜力为基础,并讨论了它们的适定性。在电导率分布受到一定限制的情况下,我们获得了许多分析关系。它们包括根据问题参数明确表示电离层电势的公式。演示了使用基于固定和非固定问题的一般公式开发的软件进行数值计算的示例。

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