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Building a regime diagram for the Earth's inner core

机译:建立地球内核的状态图

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摘要

A number of geodynamical mechanisms have been proposed to explain the origin of the structure of the inner core. Our goal here is to compare quantitatively mechanisms involving deformation of the inner core and build a regime diagram giving the dominant mechanism as a function of key control parameters. A meaningful comparison between the different mechanisms requires the definition of a measure of the strength of the flow, and we choose here to compare this mechanisms in terms of the instantaneous strain rate, and consider that the dominant mechanism is the one which induces the highest strain rates at a given time. Using scaling laws for all proposed mechanisms, we build regime diagrams giving the dominant mechanisms as a function of control parameters including the sign and strength of the density stratification in Earth's inner core, its viscosity, and magnetic field strength. We find that only specific regions of the diagram have a dominant regime potentially consistent with the seismological observed geometry and strength of the inner core anisotropy. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经提出了许多地球动力学机制来解释内核结构的起源。我们的目标是定量比较涉及内芯变形的机理,并建立一个状态图,给出主导机理与关键控制参数的函数关系。在不同机制之间进行有意义的比较需要定义一种测量流动强度的方法,我们在这里选择根据瞬时应变率比较这种机制,并认为主导机制是引起最高应变的机制。给定时间的费率。使用所有拟议机制的缩放定律,我们可以建立状态图,给出主导机制与控制参数的函数,这些控制参数包括地球内核中密度分层的符号和强度,黏度和磁场强度。我们发现,只有图中的特定区域才具有与地震观察到的几何形状和内芯各向异性强度相一致的主导体制。 (C)2015 Elsevier B.V.保留所有权利。

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