Changes of the electron concentration profile during local heating of the ionospheric plasma

Nathan Blaunstein
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引用次数: 10

Abstract

Using numerical simulation of a non-stationary problem of thermodiffusion and diffusive spreading of the electron component of the dense cold ionospheric plasma, the processes of formation and relaxation of strong disturbances of the electron temperature and concentration in the E- and F-regions of the middle-latitude ionosphere are examined, taking into account the altitudinal distribution of the electron transport coefficients. The cases of local heating and heating at separated altitudes of the ionospheric plasma by powerful radio waves generated from ground-based HF-facilities are numerically investigated. The numerical simulations of the non-stationary problem are compared with the analytical evaluations carried out for the stationary and quasi-stationary heating models. Results obtained from numerical experiments give good explanations of the experimentally observed deformation of the altitudinal ionospheric plasma density profile and the creation of negative cavities in the upper ionosphere and positive cavities in the lower ionosphere during the process of plasma heating.

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电离层等离子体局部加热过程中电子浓度分布的变化
本文采用数值模拟方法研究了电离层致密冷等离子体电子成分的非平稳热扩散和扩散扩散问题,在考虑电子传输系数的高度分布的情况下,研究了中纬度电离层E区和f区电子温度和浓度的强扰动的形成和弛豫过程。用数值方法研究了地面高频设施产生的强无线电波对电离层等离子体的局部加热和分离高度加热的情况。将非平稳问题的数值模拟结果与平稳和准平稳加热模型的分析结果进行了比较。数值实验结果很好地解释了实验观测到的电离层等离子体密度分布的高度变形和电离层上部负空腔和电离层下部正空腔的产生。
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