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Quarterdiurnal signature in sporadic E occurrence rates and comparison with neutral wind shear

机译:零星E发生率的四分之一日签名和与中性风切变的比较

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摘要

The GPS radio occultation (RO) technique is used to study sporadic E (Es) layer plasma irregularities of the Earth's ionosphere on a global scale using GPS signal-to-noise ratio (SNR) profiles from the COSMIC/FORMOSAT-3 satellite. The maximum deviation from the mean SNR can be attributed to the height of the Es layer. Es are generally accepted to be produced by ion convergence due to vertical wind shear in the presence of a horizontal component of the Earth's magnetic field, while the wind shear is provided mainly by the solar tides. Here we present analyses of quarterdiurnal tide (QDT) signatures in Es occurrence rates. From a local comparison with mesosphere/lower thermosphere wind shear obtained with a meteor radar at Collm (51.3 degrees N, 13.0 degrees E), we find that the phases of the QDT in Es agree well with those of negative vertical shear of the zonal wind for all seasons except for summer, when the QDT amplitudes are small. We also compare the global QDT Es signal with numerical model results. The global distribution of the Es occurrence rates qualitatively agrees with the modeled zonal wind shears. The results indicate that zonal wind shear is indeed an important driving mechanism for the QDT seen in Es.
机译:GPS无线电掩星(RO)技术用于使用COSMIC / FORMOSAT-3卫星的GPS信噪比(SNR)曲线在全球范围内研究地球电离层的零星E(Es)层等离子体不规则性。与平均SNR的最大偏差可以归因于Es层的高度。普遍认为,ESs是由于在地球磁场的水平分量存在的情况下由于垂直风切变而由离子会聚产生的,而风切变主要由太阳潮提供。在这里,我们介绍Es发生率的季度昼夜潮汐(QDT)签名分析。通过与在科尔姆(51.3度,东经13.0度)的流星雷达获得的中层/较低热层风切变的局部比较,我们发现Es中的QDT相位与纬向风的负垂直切变相吻合除夏季外,所有季节的QDT幅度均较小。我们还将全球QDT Es信号与数值模型结果进行比较。 Es发生率的全球分布与建模的纬向风切变定性一致。结果表明,纬向风切变确实是Es中QDT的重要驱动机制。

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  • 来源
    《Annales Geophysicae》 |2019年第3期|273-288|共16页
  • 作者单位

    Univ Leipzig, Inst Meteorol, Stephanstr 3, D-04103 Leipzig, Germany;

    German Res Ctr Geosci GFZ, Helmholtz Ctr Potsdam, Sect Space Geodet Tech 1 1, D-14473 Potsdam, Germany;

    Univ Leipzig, Inst Meteorol, Stephanstr 3, D-04103 Leipzig, Germany;

    Univ Leipzig, Inst Meteorol, Stephanstr 3, D-04103 Leipzig, Germany;

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