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New method for determining free core nutation parameters, considering geophysical effects

机译:考虑地球物理效应确定游离核章合参数的新方法

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Context. In addition to the torques exerted by the Moon, Sun, and planets, changes of precession-nutation are known to be caused also by geophysical excitations. Recently studies suggest that geomagnetic jerks (GMJ) might be associated with sudden changes of phase and amplitude of free core nutation. We showed that using atmospheric and oceanic excitations with those by GMJ improves substantially the agreement with observed celestial pole offsets. Aims. Traditionally, the period T _( f ) and quality factor Q _( f ) of the free core nutation (FCN) are derived from VLBI-based celestial pole offsets (CPO). Either direct analysis of the observed CPO, or indirect method using resonant effects of nutation terms with frequencies close to FCN, are used. The latter method is usually preferred, since it yields more accurate results. Our aim is to combine both approaches to better derive FCN parameters. Methods. We numerically integrated the part of CPO that is due to geophysical excitations for different combinations of T _( f ) , Q _( f ) , using Brzeziński’s broadband Liouville equations ( Brzeziński 1994 , Manuscripta geodaetica, 19, 157), and compared the results with the observed values of CPO. The values yielding the best fit were then estimated. The observed CPO, however, must be corrected for the change of nutation that is caused by the T _( f ) , Q _( f ) values different from those used to calculate IAU 2000 model of nutation. To this end, we have used the Mathews-Herring-Buffet transfer function and applied it to the five most affected terms of nutation (with periods 365.26, 182.62, 121.75, 27.55 and 13.66 days). Results. The results, based on the CPO data in the interval 1986.0—2016.0 and excitations with three different models, are presented. We demonstrate that better results are obtained if the influence of additional excitations at GMJ epochs is added to excitations by the atmosphere and oceans. Our preferred values are T _( f ) = 430.28 ± 0.04 mean solar days and Q _( f ) = 19 500 ± 200 .
机译:上下文。除了月亮,太阳和行星所施加的扭矩外,旋进差的变化还已知是由地球物理激发引起的。最近的研究表明,地磁冲击波(GMJ)可能与自由铁心章动的相位和振幅的突然变化有关。我们表明,与GMJ一起使用大气和海洋激发可以大大改善与观测到的天极偏移的一致性。目的传统上,自由核心章动(FCN)的周期T _(f)和品质因数Q _(f)是基于基于VLBI的天极偏移(CPO)得出的。可以使用直接分析所观察到的CPO的方法,也可以使用使用频率接近FCN的章动项的共振效应的间接方法。通常首选后一种方法,因为它可以产生更准确的结果。我们的目标是结合两种方法来更好地推导FCN参数。方法。我们使用Brzeziński的宽带Liouville方程(Brzeziński1994,Manuscripta geodaetica,19,157)对T_(f),Q _(f)不同组合的地球物理激发产生的CPO部分进行了数值积分,并比较了结果与CPO的观察值。然后估计产生最佳拟合的值。但是,对于因T _(f),Q _(f)值与用于计算IAU 2000章动模型的值不同而引起的章动变化,必须对观察到的CPO进行校正。为此,我们使用了Mathews-Herring-Buffet传递函数,并将其应用于五个受影响最大的章动术语(周期为365.26、182.62、121.75、27.55和13.66天)。结果。基于1986.0-2016.0区间的CPO数据以及三种不同模型的激励,给出了结果。我们证明,如果将GMJ纪元的额外激励影响添加到大气和海洋的激励中,将会获得更好的结果。我们的首选值为T _(f)= 430.28±0.04平均太阳日和Q _(f)= 19 500±200。

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