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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A Comparison Study of NO Cooling Between TIMED/SABER Measurements and TIEGCM Simulations
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A Comparison Study of NO Cooling Between TIMED/SABER Measurements and TIEGCM Simulations

机译:之间没有冷却的比较研究时间/军刀和TIEGCM模拟测量

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We investigate the latitudinal and longitudinal variations of thermospheric nitric oxide (NO) cooling rate from 2005 to 2016. We compare the maximum of the NO cooling rate and its altitude from measurements by the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument on National Aeronautics and Space Administration (NASA)’s TIMED (Thermosphere-Ionosphere-Mesosphere Energetics and Dynamics) satellite and from simulations by the Thermosphere-Ionosphere-Electrodynamics General Circulation Model (TIEGCM). In both data and model, the maximum NO cooling rate varies with ~11-year solar cycle, while the altitude of the peak value does not. At local noon, the maximum NO cooling rate from TIEGCM is significantly larger than that derived from SABER, especially in solar minimum. There are differences in the altitudes of the maximum NO cooling rates between the observations and simulations. The largest difference occurs at noon at low latitudes, with SABER values exceeding TIEGCM values by more than 10 km with a maximum difference of 16 km near solar maximum. Model sensitivity tests suggest that the biases are caused by a model temperature overestimation in the low thermosphere, and tides in the TIEGCM lower boundary play an important role in inducing the low-latitude temperature overestimation by the model. In addition, SABER’s height-integrated cooling rate (NO flux) exceeds that from TIEGCM, primarily due to the lower cooling rates at 140–200 km in the model.
机译:我们调查纬向和纵向thermospheric一氧化氮(NO)的变化冷却速率从2005年到2016年。最大的冷却速度和高度从测量的探测使用宽带发射辐射线测定大气(剑)在国家航空和仪器宇宙航行局(NASA)的时间(Thermosphere-Ionosphere-Mesosphere能量从模拟和动力学)卫星的Thermosphere-Ionosphere-Electrodynamics环流模式(TIEGCM)。和模型,最大的冷却速度不同~ 11年的太阳活动周期,而高度峰值不。没有从TIEGCM冷却速率最大明显大于来自军刀,特别是太阳能最低。海拔的差异最大观察和之间的冷却率模拟。中午在低纬度地区,用军刀值超过10公里以上,TIEGCM值16公里附近太阳能最大最大的区别。模型灵敏度测试表明,偏见是由一个模型温度过高低的热电离层,TIEGCM潮汐下边界诱导中起着重要的作用低纬度温度过高该模型。冷却速率(没有变化)从TIEGCM超过,主要是由于冷却速率越低在模型中140 - 200公里。

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