首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >New Evidence for the Fluctuation Characteristics of Intradecadal Periodic Signals in Length-Of-Day Variation
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New Evidence for the Fluctuation Characteristics of Intradecadal Periodic Signals in Length-Of-Day Variation

机译:跨报告周期性信号在日期变化中的混乱特征的新证据

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摘要

The intradecadal fluctuations in the length-of-day variation (LOD) are considered likely to play an important role in core motions. Two intradecadal oscillations, with similar to 5.9 and similar to 8.5 years periods (referred to as SYO and EYO, respectively), have been detected in previous studies. However, whether the SYO and the EYO have exhibited stable damping trends since 1962 and whether geomagnetic jerks are possible excitation sources for the SYO/EYO are still debated. In this study, based on different methods and different LOD records with different time spans, we showed robust evidence to prove that the SYO and the EYO have had no stable damping trends since 1962. We also found that there may be a similar to 7.6 years signal, but given that its average amplitude is too small, further confirmations are needed in the future. After confirming that the jerks have no special consistency with the peaks/valleys of the EYO/SYO, we further used a deconvolution process and confirmed that the geomagnetic jerks seem to be related to sudden changes in the SYO/EYO time series and their excitation series. Thus we finally suggest that jerks are possible excitation sources of the SYO/EYO. After using a deconvolution process, we estimate that the period P and quality factor Q of the SYO and the EYO are [P = 5.85 0.06 years, Q >= 180] and [P = 8.45 0.17 years, Q >= 350], respectively.
机译:日长变化(LOD)的年代内波动被认为可能在核心运动中发挥重要作用。在以前的研究中,已检测到两个年代内振荡,其周期类似于5.9年和8.5年(分别称为SYO和EYO)。然而,自1962年以来,SYO和EYO是否表现出稳定的阻尼趋势,以及地磁急动是否是SYO/EYO的可能激发源仍存在争议。在这项研究中,基于不同的方法和不同时间跨度的不同LOD记录,我们展示了强有力的证据,证明自1962年以来,SYO和EYO没有稳定的阻尼趋势。我们还发现,可能存在类似7.6年的信号,但鉴于其平均振幅太小,未来需要进一步确认。在确认急动与EYO/SYO的峰谷没有特别一致性后,我们进一步使用了反褶积过程,并确认地磁急动似乎与SYO/EYO时间序列及其激发序列的突然变化有关。因此,我们最后提出,急动可能是SYO/EYO的激发源。在使用反褶积过程后,我们估计SYO和EYO的周期P和质量因子Q分别为[P=5.85 0.06年,Q>=180]和[P=8.45 0.17年,Q>=350]。

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    Wuhan Univ Sch Geodesy &

    Geomat Dept Geophys Key Lab Geospace Environm &

    Geodesy Minist Educ Wuhan Peoples R China;

    Wuhan Univ Sch Geodesy &

    Geomat Dept Geophys Key Lab Geospace Environm &

    Geodesy Minist Educ Wuhan Peoples R China;

    Wuhan Univ Sch Geodesy &

    Geomat Dept Geophys Key Lab Geospace Environm &

    Geodesy Minist Educ Wuhan Peoples R China;

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  • 正文语种 eng
  • 中图分类 地球物理学;
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