火箭尾气对电离层等离子体密度扰动的数值模拟
Numerical Simulation of Ionospheric Electron Concentration Depletion by Rocket Exhaust
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摘要: 火箭点火时所排放的中性气体将与电离层F区等离子体中的离子或电子发生反应, 其主要结果是改变空间等离子体的电子浓度, 产生半径达几十公里的“电子空洞”, 其电子密度减少3个数量级以上。本文根据中性气体在电离层背景中的扩散过程, 结合注入的气体与电离层等离子体中主要粒子的化学反应, 理论计算了火箭点火时注入的H2和CO2气体对电离层电子浓度的改变。计算结果表明:中性气体注入后, 气体在电离层中迅速扩散, 并使得电离层F区电子浓度有较大幅度的减少, 能够明显看出电离层“电子空洞”。计算中对两种气体的电离层电子浓度扰动效果进行了比较, 发现CO2气体对电离层扰动的范围更大且维持时间较长。Abstract: In terms of the diffusive process of the gases injected from rocket exhaust into the ionosphere and the relevant chemical reactions between the gases and the composition of ionosphere, the modifications in ionosphere caused by the injected hydrogen and carbon dioxide gas from the rocket exhaust are investigated. The results show that the diffusive process of the injected gases at the ionospheric height is very fast, and the injected gases can lead to a local depletion of electron concentration in the F-region. Furthermore, the plasma ‘hole’ caused by carbon dioxide is larger, deeper and more durable than that by the hydrogen.
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