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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Changes in thermospheric temperature induced by high-speed solar wind streams
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Changes in thermospheric temperature induced by high-speed solar wind streams

机译:thermospheric温度的变化引起的高速太阳风流

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摘要

During high-speed stream (HSS) events the solar wind speed increases, and the cross polar cap potential increases, leading to increased Joule heating at high latitudes. The heat input at high latitudes heats the polar regions, which then conducts to lower latitudes, producing global heating. The heating occurs during the risetime of the cross polar cap potential and throughout the period of high cross polar cap potential as seen in our simulation. These simulations are performed using the Utah State University global thermosphere model driven by Joule heating rates that are consistent with electric fields observed by DMSP-15 observations of HSS events. Cooling occurs as the cross polar cap potential decreases and continues for several days after the cross polar cap potential has returned to background values. Polar cap ionospheric observations are compared to model simulations of heating and cooling, providing evidence that the thermospheric model is capturing the HSS energy input and the post-HSS multiday return to pre-HSS conditions. The HSS heating can be as high as 100 K (as seen from both the model and the data) at high latitudes, with a corresponding, but lower, global increase in thermospheric temperature.
机译:太阳在高速流(HSS)事件风速的增加,和十字架极地冰冠潜在的增加,从而增加了焦耳加热高纬度地区。纬度加热极地,然后对低纬度地区,生产全球化供暖。十字架的极冠潜力和交叉极冠潜力高的时期在我们的模拟。犹他州立大学使用全球执行热电离层模型由焦耳加热率与电场观测一致高速钢DMSP-15观察的事件。是十字架的极冠潜在的减少十字架后并持续了好几天极冠潜力已经恢复的背景值。相比,加热和的模拟模型冷却,提供的证据thermospheric模型捕获高速钢的能量输入和pre-HSS post-HSS多日的回报条件。K(从模型和数据)高纬度地区,相应的,但低,全球thermospheric温度增加。

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