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Relation of internal gravity wave anisotropy with neutral wind characteristics in the upper atmosphere

机译:内部重力波各向异性与中立大气中型风特征的关系

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This paper studies the interaction of internal gravity waves (IGW) with neutral wind using the statistics of traveling ionospheric disturbances (TID) from the Radio Physical Complex of the Institute of Solar-Terrestrial Physics. The complex includes the Irkutsk Incoherent Scatter Radar (IISR), Irkutsk Ionosonde (DPS-4), and Ekaterinburg HF Radar (EKB). The aim of this study is to give a common explanation for the TID azimuth distributions obtained with the IISR-ionosonde and HF coherent radar and show that the measurements of 3-D TID characteristics put into the hands of researchers an important tool to study neutral wind in the thermosphere. The distinctive features of this study are the following: (1) using different TID statistics from independent tools and, correspondingly, independent methods for determining TID characteristics; (2) using the 3-D TID characteristics for testing the wind-filtering hypothesis, which allows us to separate the IGW-induced TIDs from TIDs of other nature and identify three TID types depending on their elevation angles; and (3) using the local time-azimuth distribution of the TID number for testing the wind-filtering hypothesis. This study allowed us to conclude that the observed IGW azimuth anisotropy can be mainly explained by the wind filtration mechanism with considering winds at 90-250 km heights. Using the 3-D IGW characteristics allows us to estimate neutral wind parameters. Proposed methods are applicable for any tool which can obtain TID 3-D characteristics. Using the proposed methods will enable us to organize a worldwide campaign to improve the existing neutral wind models.
机译:本文利用来自太阳能陆地物理研究所的无线电物理复合物的行进电离层干扰(TID)的统计研究内部重力波(IGW)与中性风的相互作用。该复合物包括伊尔库茨克不连贯散射雷达(IISR),Irkutsk Ionosonde(DPS-4)和Ekaterinburg HF雷达(EKB)。本研究的目的是给出与IISR-Ionosonde和HF相干雷达获得的TID方位角分布的共同解释,并显示3-D TID特性的测量投入研究人员手中的中性风的重要工具在热圈。本研究的独特特征如下:(1)使用独立工具的不同TID统计数据,相应地,确定TID特征的独立方法; (2)使用3-D TID特性来测试风滤波假设,这使我们能够将IGW诱导的TID与其他性质的TID分离,并根据其高度角度识别三种TID类型; (3)使用TID号码的局部时间方位角分布用于测试风滤波假设。本研究允许我们得出结论,观察到的IGW方位角各向异性可以主要通过风过滤机构考虑在90-250 km高度的情况下。使用3-D IGW特性使我们能够估计中性风参数。所提出的方法适用于任何可以获得TID 3-D特性的工具。使用所提出的方法将使我们能够组织全球活动,以改善现有的中性风模型。

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