...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Global evolution of Birkeland currents on 10 min timescales: MHD simulations and observations
【24h】

Global evolution of Birkeland currents on 10 min timescales: MHD simulations and observations

机译:全球进化Birkeland电流10分钟时间表:磁流体动力模拟和观测

获取原文
获取原文并翻译 | 示例
           

摘要

[1] In this paper we compare time-dependent global ionospheric field-aligned current (FAC) patterns on 10 min timescales inferred from the Active Magnetosphere and Polar Electrodynamics Response Experiment (AMPERE) with the high-resolution Lyon-Fedder-Mobarry (LFM) global magnetohydrodynamic (MHD) model. The improved LFM model yields temporally varying FAC patterns with a fine structure on the sub-100 km scale. The goal of the study is to explore the responses of observed and simulated FAC patterns and underlying magnetic perturbations to a succession of rapid transitions in the solar wind and Interplanetary Magnetic Field (IMF) parameters. To drive the simulations, we use the upstream Wind and Time History of Events and Macroscale Interactions during Substorms (THEMIS) spacecraft measurements recorded on 3 August 2010. For the time interval of interest (~40 min following the impact of an interplanetary shock), the IMF is characterized by a BZ rotation from southward to northward direction under negative BY conditions. Through this case study analysis, it is found that the simulations have generally reproduced the salient characteristics of both the morphology and dynamics of the AMPERE FAC patterns. Due to the high resolution of the global model, the peak current densities are found to significantly (by a factor of 2–4) exceed those obtained from AMPERE. As a further quantitative analysis, the low-altitude magnetic perturbations measured by Iridium spacecraft and used to derive the AMPERE 2-D FAC patterns are also compared with the magnetic field variations calculated from the simulations. It is found that outside of localized regions of peak current densities, which mainly occur on the dayside and can fall between the Iridium tracks, the simulated magnetic perturbations closely follow the Iridium measurements. This demonstrates, in particular, that there is no systematic bias in the simulations to overestimate the magnetic perturbations and corresponding FAC densities. Overall, our results demonstrate that given sufficient resolution, contemporary global MHD models are capable of reproducing observed features of global ionospheric FAC distributions. This, in particular, suggests the feasibility of potential efforts to assimilate AMPERE observations in global magnetospheric models.
机译:[1]在本文中,我们比较时间全球电离层field-aligned电流(FAC)模式在10分钟时间尺度从活跃的推断磁气圈和极地电动力学响应实验(安培)和高分辨率磁流体动力(磁流体动力)模型。模型不同FAC收益率暂时模式子上的精细结构- 100公里。这项研究的目标是探索的反应观察和模拟FAC模式和潜在的磁扰动一连串太阳风和快速转换行星际磁场(IMF)参数。驱动模拟,我们使用上游风和时间的历史事件和宏观尺度在亚暴(裁判)航天器的交互2010年8月3日测量记录。感兴趣的时间间隔(约40分钟后影响的行星际激波),国际货币基金组织BZ旋转从向南到的特征消极的条件下向北方向。通过这个案例研究分析,发现模拟通常复制最显著的特征安培FAC形态和动力学模式。全局模型,峰值电流密度发现显著(2 - 4倍)超过了安培。定量分析,低空磁铱航天器和扰动测量用于推导出安培二维FAC模式与磁场的变化从模拟计算。局部的区域之外的峰值电流主要发生在的光面和密度可以介于铱,模拟磁扰动密切关注铱的测量。特别的,没有系统性偏差高估了磁场的模拟扰动和相应的FAC密度。总的来说,我们的研究结果表明足够的分辨率,当代全球磁流体动力模型能够繁殖全球电离层FAC分布的特性。尤其是,这建议的可行性潜在的努力吸收安培观察在全球磁性层的模型。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号