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Daytime vertical E × B drift velocities inferred from ground-based magnetometer observations at low latitudes

机译:从低纬度的地面磁强计观测推断出的白天垂直E×B漂移速度

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摘要

The daytime equatorial electrojet is a narrow band of enhanced eastward current flowing in the 100–120 km altitude region within ±2° latitude of the dip equator. A unique way of determining the daytime strength of the electrojet is to observe the difference in the magnitudes of the horizontal (H) component between a magnetometer placed directly on the magnetic equator and one displaced 6° – 9° away. The difference between these measured H values provides a direct measure of the daytime electrojet current and, in turn, the magnitude of the vertical E × B drift velocity in the F region ionosphere. This paper discusses a recent study where 27 months of magnetometer H component observations and daytime, vertical E × B drift velocities were obtained in the Peruvian longitude sector between August 2001 and December 2003. In order to establish the relationships between ΔH and E × B drift velocities for the 270 days of observations, three approaches were chosen: (1) a linear regression analysis, (2) a multiple regression approach, and (3) a neural network approach. The neural network method gives slightly lower RMS error values compared with the other two methods. The relationships for all three techniques are validated using an independent set of E × B drift observations from the Jicamarca incoherent scatter radar (ISR) located at Jicamarca, Peru. The techniques presented here will be incorporated into a recently developed, real-time Global Assimilation of Ionospheric Measurements (GAIM) model.
机译:白天赤道电喷流是一条陡峭的增强的东向电流带,在俯仰赤道±2°纬度内的100-120 km高度区域中流动。确定电喷装置白天强度的一种独特方法是观察直接放在磁赤道上的磁力计和相距6°– 9°的磁力计之间水平(H)分量的大小差异。这些测得的H值之间的差异可直接测量白天的电喷电流,进而可以测量F区电离层中垂直E×B漂移速度的大小。本文讨论了最近的一项研究,该研究在2001年8月至2003年12月之间的秘鲁经度区获得了27个月的磁力计H分量观测值和白天的垂直E×B漂移速度。为了建立ΔH与E×B漂移之间的关系在270天的观测速度中,选择了三种方法:(1)线性回归分析,(2)多元回归方法和(3)神经网络方法。与其他两种方法相比,神经网络方法给出的RMS误差值略低。这三种技术之间的关系都通过使用来自秘鲁Jicamarca的Jicamarca非相干散射雷达(ISR)的一组独立的E×B漂移观测值进行了验证。本文介绍的技术将被并入最近开发的实时电离层测量全球同化(GAIM)模型中。

著录项

  • 来源
    《Space Weather》 |2004年第11期|1-9|共9页
  • 作者单位

    Cooperative Institute for Research in Environmental Sciences, University of Colorado and Space Environment Center, National Oceanic and Atmospheric Administration, Boulder, Colorado, USA;

    Cooperative Institute for Research in Environmental Sciences, University of Colorado and Space Environment Center, National Oceanic and Atmospheric Administration, Boulder, Colorado, USA;

    Radio Observatorio de Jicamarca, Lima, Peru;

    Radio Observatorio de Jicamarca, Lima, Peru;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Magnetometers; Electron mobility; Electric fields; Magnetic field measurement; Magnetosphere; Ionosphere; DH-HEMTs;

    机译:磁力计;电子迁移率;电场;磁场测量;磁层;电离层;DH-HEMTs;
  • 入库时间 2022-08-18 00:02:16

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