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Rationale and geophysical evidence for quasi-geostrophic rapid dynamics within the Earth's outer core

机译:地球外核内准地转快速动力学的原理和地球物理证据

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摘要

We present arguments supporting the hypothesis that the flow in the Earth's core, for the time scales of the historical secular variation, is well described by a quasi-geostrophic (QG) model, almost invariant along the rotation axis. A previous study showed that for axisymmetric motions, the dimensionless number appropriate to compare magnetic and rotation forces is independent of magnetic diffusivity, increases with decreasing length scales, and takes value much smaller than unity for lengths about 10~6m. Here, we extend this result to non-axisymmetric motions, and give a criterion for QG to hold based on length scale, rotation rate and magnetic field intensity. The numerical simulations exhibit a columnar behaviour at parameters representative of the Earth's core, supporting the quasi-geostrophic hypothesis for fast, large length-scale motions. In addition, we present the results of several inversions of the core flow from geomagnetic field models, showing that (a) the energy of the motions symmetrical with respect to the equatorial plane represents about 80% of the total energy when no symmetry is assumed a priori; (b) for the same number of parameters, an equatorially symmetric (QG) flow model explains more of the secular variation than a flow without specified geometry.
机译:我们提出了支持以下假设的论点:就历史长期变化的时间尺度而言,地核中的流动由准地转(QG)模型很好地描述,该模型沿旋转轴几乎不变。先前的研究表明,对于轴对称运动,适合比较磁力和旋转力的无量纲数与磁扩散率无关,随着长度比例的减小而增加,并且在大约10〜6m的长度下,其值远小于单位。在这里,我们将此结果扩展到非轴对称运动,并根据长度比例,旋转速率和磁场强度给出QG保持的标准。数值模拟显示了代表地球核心的参数处的柱状行为,支持了准大地壳假说的快速,大尺度运动。此外,我们提供了地磁场模型对磁心流进行多次反演的结果,结果表明:(a)当假设不对称时,相对于赤道平面对称的运动的能量约占总能量的80%a先验(b)对于相同数量的参数,赤道对称(QG)流动模型比没有指定几何形状的流动解释了更多的长期变化。

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