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由于对流平移导致内核之上的熔化分层。

Melting-induced stratification above the Earth's inner core due to convective translation.

机构信息

Laboratoire de Géophysique Interne et Tectonophysique, CNRS, Observatoire de Grenoble, Université Joseph Fourier, Maison des Géosciences, BP 53, 38041 Grenoble Cedex 9, France.

出版信息

Nature. 2010 Aug 5;466(7307):744-7. doi: 10.1038/nature09257.

Abstract

In addition to its global North-South anisotropy, there are two other enigmatic seismological observations related to the Earth's inner core: asymmetry between its eastern and western hemispheres and the presence of a layer of reduced seismic velocity at the base of the outer core. This 250-km-thick layer has been interpreted as a stably stratified region of reduced composition in light elements. Here we show that this layer can be generated by simultaneous crystallization and melting at the surface of the inner core, and that a translational mode of thermal convection in the inner core can produce enough melting and crystallization on each hemisphere respectively for the dense layer to develop. The dynamical model we propose introduces a clear asymmetry between a melting and a crystallizing hemisphere which forms a basis for also explaining the East-West asymmetry. The present translation rate is found to be typically 100 million years for the inner core to be entirely renewed, which is one to two orders of magnitude faster than the growth rate of the inner core's radius. The resulting strong asymmetry of buoyancy flux caused by light elements is anticipated to have an impact on the dynamics of the outer core and on the geodynamo.

摘要

除了全球的南北各向异性之外,还有另外两个与地核内部有关的神秘地震学观测结果:其东西半球之间的不对称性,以及外核底部存在一个地震波速降低的层。这个 250 公里厚的层被解释为轻元素中组成降低的稳定分层区域。在这里,我们表明,这个层可以通过内核表面的同时结晶和熔化产生,而内核中的平移热对流模式可以分别在每个半球上产生足够的熔化和结晶,从而形成密集层。我们提出的动力学模型在内核的一个熔化半球和一个结晶半球之间引入了明显的不对称性,这为解释东西半球不对称性提供了基础。我们发现,内核完全更新的典型翻译速率是每百万年 1 亿年,这比内核半径的增长率快一到两个数量级。由轻元素引起的浮力通量的强烈不对称性预计将对外部核心的动力学和地发电机产生影响。

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