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Rapid response of the thermosphere to variations in Joule heating

机译:快速反应的热电离层变化在电阻加热

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Total mass density measurements from the CHAMP satellite near 400 km altitude are used to define the response time of the thermosphere to high-latitude heating sources. A series of three geomagnetic storms occurred during the period of 20-29 July 2004 each with unique characteristics of energy input, affording the opportunity to observe the response characteristics of the thermosphere. By studying these storms in such close vicinity to one another, the aliasing effects of satellite sampling and seasonal and solar cycle variations are mitigated. Differences between the daytime and nighttime density response at all latitudes are discussed in the context of the various mechanisms. Generally, response times are between 3 and 4 h at low latitudes while less than 2 h at midlatitudes to high latitudes. These time lags are significantly shorter than those conventionally used to drive many empirical models of the thermosphere. During the night, response times are less accurate because of the somewhat sporadic arrival of traveling atmospheric disturbances at different latitudes.
机译:总冠军的质量密度的测量卫星附近400公里高度用于定义热电离层的响应时间高纬度地区加热源。磁暴期间发生的2004年7月为20 - 29每个都有独特的特点能量的输入,提供机会观察的响应特征热大气层。关闭附近,混叠卫星采样和季节性的影响在降低太阳周期变化。白天与夜间密度响应所有纬度上的讨论的上下文的各种机制。3和4 h之间的响应时间低纬度而小于2 h在情理之中高纬度地区。比常规用于驱动短许多实证模型的热大气层。晚上,响应时间不准确因为有些零星的到来旅游在不同大气扰动纬度。

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