首页> 外文期刊>Physics of the Earth and Planetary Interiors: A Journal Devoted to Obsevational and Experimerntal Studies of the Chemistry and Physics of Planetary Interiors and Their Theoretical Interpretation >Investigating the 2003 geomagnetic jerk by simultaneous inversion of the secular variation and acceleration for both the core flow and its acceleration
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Investigating the 2003 geomagnetic jerk by simultaneous inversion of the secular variation and acceleration for both the core flow and its acceleration

机译:通过同时反演地磁变化及其加速度的长期变化和加速度来调查2003年地磁冲击

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摘要

At observatory locations, the Earth's magnetic field displays an almost constant secular acceleration, except at times of geomagnetic jerks when this quantity suddenly changes its value. The 2003 geomagnetic jerk was the first to have been recorded globally and uniformly over the Earth, and is well captured by time-varying spherical harmonic models of the geomagnetic field, based on satellite data. We jointly derive instantaneous estimates of the core surface flow and acceleration accounting for the field secular variation and acceleration given by such models. We consider epochs just before and after the 2003 event and show that no steady flow, no matter how general, can simultaneously account for the observed secular variation and acceleration at either epoch. Assuming the flow to be tangentially geostrophic, we next show that even purely toroidal zonal flow accelerations cannot account for the observed secular acceleration and conclude that more general tangentially geostrophic flow accelerations are required by the data. These flow accelerations, however, may well be equatorially symmetric, as predicted by theoretical considerations. Investigating the flow acceleration change throughout the 2003 event shows that these also may be equatorially symmetric, but definitely not purely toroidal zonal. This unambiguously confirms earlier suggestions that the 2003 geomagnetic jerk was a more complex phenomena than a simple consequence of torsional oscillations.
机译:在天文台位置,地球磁场显示出几乎恒定的长期加速度,但在地磁急转时该量突然改变其值时除外。 2003年的地磁冲击是首次在全球范围内均匀地记录下来,并且基于卫星数据,地磁场的时变球谐模型很好地捕捉了这一点。我们联合推导了岩心表面流动和加速度的瞬时估计值,考虑了此类模型给出的磁场长期变化和加速度。我们考虑了2003年事件前后的时期,并且表明无论有多普遍,稳定的流量都不能同时解释在任一时期观察到的长期变化和加速度。假设流动是切向地转的,那么我们接下来表明,即使是纯粹的环形纬向流加速也不能解释观测到的长期加速度,并得出结论,数据需要更一般的切向地转。然而,如理论上的考虑所预料的那样,这些流动加速度很可能是赤道对称的。对整个2003年事件的流速加速度变化进行研究表明,它们也可能是赤道对称的,但绝对不是纯粹的环形带。这无疑证实了早先的建议,即2003年的地磁冲击是比扭振的简单后果更为复杂的现象。

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