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Rapidly changing flows in the Earth's core

机译:快速改变地球核心的流量

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摘要

A large part of the Earth's magnetic field is generated by fluid motion in the molten outer core(1). As a result of continuous satellite measurements since 1999, the core magnetic field and its recent variations can now be described with a high resolution in space and time(2). These data have recently been used to investigate small-scale core flow(3,4), but no advantage has yet been taken of the improved temporal resolution, partly because the filtering effect of the electrically conducting mantle was assumed to mask short-period magnetic variations(5). Here we show that changes in the magnetic field occurring over only a few months, indicative of fluid flow at the top of the core, can in fact be resolved. Using nine years of magnetic field data obtained by satellites as well as Earth-based observatories, we determine the temporal changes in the core magnetic field and flow in the core. We find that the core flow is spatially localized and involves rapid variations over a few months, with surprisingly large local accelerations. Our results suggest that short-term fluctuations of the core magnetic field are robust features of rapid core dynamics and should be considered in the development of future numerical models of the geodynamo.
机译:地球磁场的很大一部分是由熔融外核(1)中的流体运动产生的。自1999年以来连续进行卫星测量,结果可以用高分辨率在空间和时间上描述核心磁场及其最新变化(2)。这些数据最近被用于研究小规模的岩心流动(3,4),但尚未获得改善的时间分辨率的优势,部分原因是假定导电地幔的过滤作用掩盖了短周期的磁变体(5)。在这里,我们表明,仅在几个月内发生的磁场变化实际上就可以解决,表明磁场在磁心顶部流动。利用卫星和地球观测站获得的九年磁场数据,我们确定了核心磁场和核心流动的时间变化。我们发现岩心流动在空间上是局部的,并且在几个月内涉及快速变化,并且具有惊人的局部加速度。我们的结果表明,铁心磁场的短期波动是铁心快速动力学的强大特征,应在未来的地球动力学数值模型的开发中加以考虑。

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