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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Effects of high-latitude thermosphere heating at various scale sizes simulated by a nonhydrostatic global thermosphere-ionosphere model
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Effects of high-latitude thermosphere heating at various scale sizes simulated by a nonhydrostatic global thermosphere-ionosphere model

机译:用非静力学的整体热球-电离层模型模拟的各种尺度大小的高纬度热球加热的影响

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摘要

Using the University of Michigan Global Ionosphere-Thermosphere Model (GITM) variations of the high-latitude Joule and auroral heating with increasing spatial resolution and the resulting changes in the high-latitude thermosphere-ionosphere are studied. Additionally, the application of multiplicative factors artificially increasing the Joule heating in global thermosphere models is investigated by running simulations at low resolution, at high resolution, and then at low resolution again, with the Joule heating artificially increased to be similar to the value derived when running with high resolution. All simulations have been performed for December solstice conditions at constant low geomagnetic and moderate solar activity levels. Increasing the resolution from 5° longitude by 5° latitude to 2.5° longitude by 0.3125° latitude increases the high-latitude mean Joule heating by ~40%, partially by better capturing the peaks in the electric field. Although the Joule heating is increased, the global mean temperature is not altered significantly due to resulting adiabatic cooling. When the Joule heating is artificially increased in the low resolution simulations, the temperature increases more, due to the model inability to adequately capture the dynamical cooling. It is therefore suggested that artificially increasing the Joule heating may not be the best method for capturing the realistic temperature structure or the dynamics within the thermosphere.
机译:使用密歇根大学全球电离层-热层模型(GITM),研究了高纬度焦耳和极光加热随空间分辨率的变化以及高纬度热层-电离层的变化。此外,通过在低分辨率,高分辨率,然后再次在低分辨率下运行模拟,研究了在全球热圈模型中人为增加焦耳热的乘数因子的应用,其中人为地增加了焦耳热,使其近似于以高分辨率运行。所有模拟都是在恒定的低地磁和中等太阳活动水平下对12月的冬至条件进行的。将分辨率从5度经度增加到2.5度经度0.3125度,可以将高纬度平均焦耳热提高约40%,部分原因是可以更好地捕获电场中的峰值。尽管焦耳热增加,但由于绝热冷却,整体平均温度没有明显改变。在低分辨率模拟中人为增加焦耳热时,由于模型无法充分捕获动态冷却,温度会增加更多。因此,建议人为地增加焦耳热可能不是捕获实际温度结构或热圈内动态的最佳方法。

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