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Thermospheric mass density specification using an ensemble Kalman filter

机译:Thermospheric质量密度规范使用集合卡尔曼滤波

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This paper presents an application of ensemble Kalman filtering (EnKF) to a general circulation model of the thermosphere and ionosphere. It is designed to incorporate the feedback between plasma and neutral variables in both the analysis and forecast steps of filtering so that thermospheric parameters can be inferred from ionospheric observations and vice versa. We make a case that the global neutral density specification can greatly benefit from this approach based on a number of filtering experiments conducted under the assumption of no model bias. Specific observations considered are (i) neutral mass densities obtained from the accelerometer experiment on board the CHAMP satellite and (ii) electron density profiles obtained from the COSMIC/FORMOSAT-3 mission. Assimilation of the neutral mass density obtained from the CHAMP mission into the TIEGCM is shown to improve the neutral density specification in the vicinity of satellite orbits, but is short of making a global impact unless accompanied by the estimation of the primary driver of the density variability such as solar EUV flux. On the other hand, assimilation of the COSMIC/FORMOSAT-3 electron density profiles into the Thermosphere-Ionosphere-Electrodynamics General Circulation Model (TIEGCM) is far more effective than the CHAMP neutral density in terms of improving the global neutral mass density specification. This suggests a synthesis of thermospheric and ionospheric observations into the general circulation model, brought about with the help of the latest EnKF techniques, can effectively increase the geophysical information content of observations. Key Points This technique can increase geophysical information content of observations Possible to infer thermospheric parameters from electron density observations The EnKF system was constructed with NCAR community softwares
机译:介绍了一个应用程序的合奏卡尔曼滤波(EnKF)环流热大气层、电离层的模型。旨在整合之间的反馈等离子体和中性变量的分析和预测过滤,这样的步骤thermospheric参数可以推断电离层观测,反之亦然。全球中性密度规范可以极大地从中受益基于大量的过滤方法实验的假设下模型偏差。(我)中性的质量密度获得加速度计实验上的冠军卫星和(2)电子密度配置文件从宇宙/ FORMOSAT-3获得任务。同化的中性的质量密度从冠军TIEGCM显示任务改善中性密度规范附近的卫星轨道,但是是短暂的除非伴随着全球影响密度估计的主要推动力太阳能EUV通量等变化。手,同化宇宙/ FORMOSAT-3电子密度配置文件的Thermosphere-Ionosphere-Electrodynamics一般循环模型(TIEGCM)更有效冠军的中性密度改善全球中性的质量密度规范。thermospheric和电离层观测到大气环流模式,带来了最新的EnKF技术的帮助下,可以有效提高地球物理信息观察的内容。技术可以提高地球物理信息观察的内容可以推断从电子密度thermospheric参数观察EnKF系统了NCAR社区软件

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