Long-Period Nutational-Precessional Motions of the Instantaneous Earth Rotation Pole

V. Belashov, E. Belashova, O. Kharshiladze
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Abstract

The influence of the rotational regime on real long-period nutational-precessional motions of the instantaneous pole of the Earth’s rotation is considered. The solar magnetospheric (through changes in the angular velocity of rotation) mechanism of action is discussed. The observed 12-month oscillations of the instantaneous axis of rotation are explained by the influence of the deforming force arising when the angular velocity changes, which causes deformation of the figure that is not uniform in the longitudinal zones, without involving baric-circulation processes as an intermediate link. Thus, free (Chandler) and forced 12-month fluctuations of the pole position are considered from a single point of view, i.e., as resulting from the variabi-lity of the rotational regime of the Earth. The analysis of heliogeophysical data for 1900–2017 confirms the validity of the proposed relationship mechanism.
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瞬时地球自转极的长周期国家岁差运动
考虑了旋转状态对地球自转瞬时极实际长周期国家岁差运动的影响。讨论了太阳磁层(通过旋转角速度的变化)的作用机理。观测到的12个月的瞬时旋转轴振荡可以用角速度变化时产生的变形力的影响来解释,角速度变化导致在纵向区域不均匀的图形变形,而不涉及作为中间环节的气压环流过程。因此,从一个单一的观点来考虑磁极位置的自由(钱德勒)和强迫12个月的波动,即由于地球自转制度的可变性而产生的波动。1900-2017年日地球物理数据分析证实了上述关系机制的有效性。
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CiteScore
0.60
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0.00%
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0
审稿时长
17 weeks
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