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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Interplanetary control of thermospheric densities during large magnetic storms
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Interplanetary control of thermospheric densities during large magnetic storms

机译:大磁暴过程中热层密度的行星际控制

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During the main phase of large magnetic storms significant energy can be deposited in the ionosphere but produce no commensurate magnetic perturbations on the ground. Consequently, models designed to predict and specify thermospheric energy budgets based on ground magnetic data are negatively impacted. To quantify these effects we compare thermospheric densities predicted by the MSIS model with those inferred from accelerometer measurements by the Gravity Recovery and Climate Experiment (GRACE) satellites during two magnetic storm periods in 2004. Although predictions and measurements are in substantial agreement during quiet times, the model significantly underpredicts densities during storms. Also, the model's maxima occur several hours after observed stormtime peaks. We show that polar cap potentials and magnetospheric electric fields derived from interplanetary parameters measured by the Advanced Composition Explorer satellite are roughly proportional to neutral densities observed by GRACE with lead times of similar to 4h. Finally, ion drift meter data from Defense Meteorological Satellite Program spacecraft suggest that unpredicted positive and negative spikes found in high latitude accelerometer data reflect encounters with strong head and tail thermospheric winds driven by anti-sunward convecting plasma. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在大磁暴的主要阶段,大量能量可以沉积在电离层中,但不会在地面上产生相称的磁扰动。因此,旨在基于地面磁数据预测和指定热层能量预算的模型受到负面影响。为了量化这些影响,我们将MSIS模型预测的热层密度与重力恢复和气候实验(GRACE)卫星在2004年的两次磁暴时期通过加速度计测量得出的密度进行了比较。尽管在安静时期,预测和测量基本吻合,该模型大大低估了暴风雨期间的密度。此外,模型的最大值出现在观察到的风暴时间峰值后的几个小时。我们显示,由先进成分探索者卫星测得的行星际参数得出的极帽电势和磁层电场大致与GRACE观测到的中性密度成正比,前置时间约为4h。最后,来自国防气象卫星计划航天器的离子漂移仪数据表明,在高纬度加速度计数据中发现的未预料到的正负尖峰反映了由逆向对流等离子驱动的强头顶热风和尾热风的遭遇。 (c)2006 Elsevier Ltd.保留所有权利。

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