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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Gravitywave effects on postsunset equatorial F region stability
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Gravitywave effects on postsunset equatorial F region stability

机译:重力波对赤道后赤道F区稳定性的影响

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The influence of gravity waves on the stability of the postsunset equatorial F region ionosphere is investigated numerically. For this investigation, we use the output of a direct numerical simulation of waves and turbulence in the mesosphere and lower thermosphere to force a simulation of ionospheric dynamics. Both simulations are cast in three dimensions. The effectiveness of the neutral-plasma coupling involved is generally thought to depend on the dynamo efficiency and spatial resonance of the forcing, which we evaluate. In our simulations, the postsunset equatorial ionosphere could be deformed by neutral waves after 5–15 min most severely when the wavefronts were aligned approximately with the magnetic meridian, despite the fact that the dynamo efficiency is modest even in that case. However, poor spatial resonance limits the subsequent growth of the deformations in our simulations, and the seeding of interchange instabilities does not occur. The coupled simulations predict the formation of intermediate layers in the equatorial valley region (150–250 km apex altitude) under some circumstances that could serve as telltales in nature of the presence of the kind of neutral forcing we simulate.
机译:数值研究了重力波对赤道后赤道F区电离层稳定性的影响。对于此调查,我们使用中层和下热层中波和湍流的直接数值模拟输出来强制进行电离层动力学模拟。两种模拟都在三个维度上进行。通常认为所涉及的中性-等离子体耦合的有效性取决于发电机效率和我们评估的强迫空间共振。在我们的模拟中,尽管波前与磁子午线大致对准,但震后赤道电离层在5-15分钟后可能会因中性波而最严重变形,尽管即使在这种情况下发电机的效率也很低。但是,不良的空间共振会限制我们模拟中变形的后续增长,并且不会发生互换不稳定性的种子。耦合的模拟预测在某些情况下在赤道谷地区域(顶点高度150-250 km)中的中间层的形成,可以作为我们所模拟的中性强迫存在的本质的传闻。

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