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High-Pressure Geoscience Special Feature: Insights into the nature of the transition zone from physically constrained inversion of long-period seismic data

机译:高压地球科学专题:长周期地震数据的物理约束反演洞察过渡带的性质

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摘要

Imposing a thermal and compositional significance to the outcome of the inversion of seismic data facilitates their interpretation. Using long-period seismic waveforms and an inversion approach that includes constraints from mineral physics, we find that lateral variations of temperature can explain a large part of the data in the upper mantle. The additional compositional signature of cratons emerges in the global model as well. Above 300 km, we obtain seismic geotherms that span the range of expected temperatures in various tectonic regions. Absolute velocities and gradients with depth are well constrained by the seismic data throughout the upper mantle, except near discontinuities. The seismic data are consistent with a slower transition zone and an overall faster shallow upper mantle, which is not compatible with a homogenous dry pyrolite composition. A gradual enrichment with depth in a garnet-rich component helps to reduce the observed discrepancies. A hydrated transition zone would help to lower the velocities in the transition zone, but it does not explain the seismic structure above it.
机译:对地震数据反演的结果施加热学和成分意义,有助于其解释。使用长期地震波形和包含矿物物理约束的反演方法,我们发现温度的横向变化可以解释上地幔的大部分数据。克拉通的其他成分特征也出现在全局模型中。在300 km以上,我们获得了地震地热,它们跨越了各个构造区域的预期温度范围。除不连续点外,整个上地幔的地震资料都很好地限制了绝对速度和深度梯度。地震数据与较慢的过渡带和整体较快的浅地幔一致,这与均质的干黄铁矿成分不相容。富含石榴石的成分中逐渐丰富的深度有助于减少观察到的差异。水合过渡带将有助于降低过渡带的速度,但不能解释其上方的地震构造。

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