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High-latitude energy input and its impact on the thermosphere

机译:高纬度地区的能量输入和它的影响热大气层

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This paper presents a quantitative assessment of high-latitude energy input and its partitioning in the polar cap by synthesizing various space and ground-based observations during the 17 January 2005 geomagnetic storm. It was found that Joule heating is the primary form of magnetospheric energy input, especially during active times when the hemispheric-integrated Joule heating can be an order of magnitude larger than the hemispheric-integrated auroral power. Most of magnetospheric energy is dissipated in the auroral zone rather than in the polar cap. On average, only about 22–25% of the total hemispheric energy input is dissipated into the polar cap region bordered by the convection reversal boundary (CRB) and the poleward auroral flux boundary (FXB). The impact of high-latitude energy input was also investigated to unveil the causal relationship between Joule heating and the formation of polar cap mass density anomalies. Our numerical simulation demonstrated that thermosphere dynamics readily redistributes composition, temperature, and mass through upwelling and atmospheric gravity waves. The polar cap mass density anomalies observed by the CHAMP satellite during the storm were largely a result of large-scale atmospheric gravity waves. Therefore, an increase in local thermospheric mass density does not necessarily mean there is direct energy input.
机译:本文提出一种定量的评估高纬度地区能源输入和分区在极地冰冠合成各种空间在17和地面观测2005年1月地磁风暴。电阻加热的主要形式磁性层的能量输入,特别是在hemispheric-integrated活跃的时候焦耳加热可以大一个数量级比hemispheric-integrated极光的力量。大多数磁性层的能量消散极光区而不是极冠。平均,只有22个,占总数的25%半球能量消散到输入极冠区接壤的对流逆转边界(CRB)和向南极的极光通量边界(当地)。能量输入也调查公布电阻加热和因果关系形成的极冠质量密度异常。我们的数值模拟表明,热电离层动力学容易重新分配成分、温度和质量上升流和大气重力波。极冠质量密度异常观察的CHAMP卫星在暴风雨中很大程度上由于大规模的大气重力波。因此,增加当地thermospheric质量密度并不一定意味着有直接的能量输入。

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