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Olivine anisotropy suggests Gutenberg discontinuity is not the base of the lithosphere

机译:橄榄石各向异性表明古腾堡的不连续性不是岩石圈的基础

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摘要

Tectonic plates are a key feature of Earth’s structure, and their behavior and dynamics are fundamental drivers in a wide range of large-scale processes. The operation of plate tectonics, in general, depends intimately on the manner in which lithospheric plates couple to the convecting interior. Current debate centers on whether the transition from rigid lithosphere to flowing asthenosphere relates to increases in temperature or to changes in composition such as the presence of a small amount of melt or an increase in water content below a specified depth. Thus, the manner in which the rigid lithosphere couples to the flowing asthenosphere is currently unclear. Here we present results from laboratory-based torsion experiments on olivine aggregates with and without melt, yielding an improved database describing the crystallographic alignment of olivine grains. We combine this database with a flow model for oceanic upper mantle to predict the structure of the seismic anisotropy beneath ocean basins. Agreement between our model and seismological observations supports the view that the base of the lithosphere is thermally controlled. This model additionally supports the idea that discontinuities in velocity and anisotropy, often assumed to be the base of the lithosphere, are, instead, intralithospheric features reflecting a compositional boundary established at midocean ridges, not a rheological boundary.
机译:构造板块是地球结构的关键特征,它们的行为和动力学是广泛的大规模过程的基本驱动力。总体而言,板块构造的操作与岩石圈板块与对流内部耦合的方式密切相关。当前的争论集中在从刚性岩石圈到流动软流圈的转变是否与温度升高有关,还是与成分的变化有关,例如少量熔体的存在或特定深度以下水含量的增加。因此,目前尚不清楚刚性岩石圈耦合到流动的软流圈的方式。在这里,我们介绍了基于实验室的,对有或没有熔体的橄榄石骨料进行扭转试验的结果,得出了描述了橄榄石晶粒结晶取向的改进数据库。我们将此数据库与大洋上地幔流动模型相结合,以预测海盆下方地震各向异性的结构。我们的模型与地震观测结果之间的一致性支持了岩石圈底部受热控制的观点。该模型还支持这样一种观点,即速度和各向异性的不连续性通常被认为是岩石圈的基础,而是反映反映在洋中脊上建立的组成边界而不是流变边界的岩石圈内特征。

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