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An explanation for the shape of Earth's gravity spectrum based on viscous mantle flow models - art. no. 2019

机译:基于粘性地幔流动模型的地球重力谱形状的解释-艺术没有。 2019年

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摘要

The Earth's gravity spectrum can be used as an observational constraint on geophysical modelling. Here we show how the spectrum up to degree l=31 can be explained to a large part by viscous mantle flow in combination with a very simple model of random mantle density anomalies. Efforts to make the calculation more "realistic'' by considering effects of thermal boundary layers, or using density anomalies based on tomography, or geodynamic modelling, tend to worsen the fit. Results are rather sensitive to assumptions on density anomalies in the upper thermal boundary layer. We suggest that, in combination with other observations, the shape of the Earth's gravity spectrum can serve to better constrain radial viscosity structure, density anomalies and flow in the Earth's mantle. Appropriate treatment of the lithosphere and of lateral viscosity variations will be the main challenges in modelling this spectrum. [References: 20]
机译:地球重力频谱可以用作地球物理建模的观测约束。在这里,我们展示了如何通过粘性地幔流动与非常简单的随机地幔密度异常模型相结合,在很大程度上解释高达l = 31的光谱。通过考虑热边界层的影响或使用基于断层扫描或地球动力学建模的密度异常来使计算更加“逼真”的努力往往会使拟合度变差,结果对于上部热边界中密度异常的假设相当敏感。我们建议,结合其他观测资料,地球重力谱的形状可以更好地限制径向粘度结构,密度异常和地幔中的流动,对岩石圈和横向粘度变化的适当处理将是最主要的方法。建模此频谱时面临的主要挑战[参考文献:20]

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