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Detecting thermal boundary control in surface flows from numerical dynamos

机译:从数值动力检测表面流中的热边界控制

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摘要

The geomagnetic field and secular variation exhibit asymmetrical spatial features which are possibly originating from an heterogeneous thermal control of the Earth's lower mantle on the core. The identification of this control in magnetic data is subject to several difficulties, some of which can be alleviated by the use of core surface flow models. Using numerical dynamos driven by heterogeneous boundary heat flux, we confirm that within the parameter space accessible to simulations, time average surface flows obey a simple thermal wind equilibrium between the Coriolis and buoyancy forces, the Lorentz, inertial and viscous forces playing only a secondary role, even for Elsasser numbers significantly larger than I. Furthermore, we average the models over the duration of three vortex turnovers, and correlate them with a longer time average which fully reveals the signature of boundary heterogeneity. This allows us to quantify the possibility of observing mantle control in core surface flows averaged over a short time period. A scaling analysis is performed in order to apply the results to the Earth's core. We find that three vortex turnovers could represent between 100 and 360 years of Earth time, and that the heat flux heterogeneity at the core-mantle boundary could be large enough to yield an observable signature of thermal mantle control in a time average core surface flow within reach of the available geomagnetic data. (c) 2006 Elsevier B.V. All rights reserved.
机译:地磁场和长期变化表现出不对称的空间特征,这可能源于对地心下部地幔的非均质热控制。磁数据中这种控制方法的识别存在一些困难,其中一些困难可以通过使用岩心表面流动模型来缓解。使用由异质边界热通量驱动的数值动力学,我们确认在可访问的参数空间内,时间平均表面流服从科里奥利力和浮力之间的简单热风平衡,洛伦兹力,惯性力和粘性力仅起次要作用,即使Elsasser数显着大于I。此外,我们对三个涡旋翻转持续时间内的模型进行平均,并将它们与更长的时间平均值相关联,这充分揭示了边界异质性的特征。这使我们能够量化观察在短时间内平均的岩心表面流中地幔控制的可能性。为了将结果应用于地球核心,需要执行缩放分析。我们发现三个涡旋转换可以代表地球时间的100至360年,并且在核心-地幔边界处的热通量异质性可能足够大,从而在平均时间范围内的核心平均地表流向内产生可观察到的热幔控制特征。可用地磁数据的范围。 (c)2006 Elsevier B.V.保留所有权利。

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