首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Generation of tectonic over-pressure inside subducting oceanic lithosphere involving phase-loop of olivine-wadsleyite transition
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Generation of tectonic over-pressure inside subducting oceanic lithosphere involving phase-loop of olivine-wadsleyite transition

机译:俯冲海洋岩石圈内部构造超压的产生,涉及橄榄石-辉石转变的相环

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We conducted a two-dimensional numerical model to analyze the generation of tectonic over-pressure, which is a positive deviation from lithostatic pressure, for deep slabs which are anchored at the 660 km phase boundary. The formation of the ductile shear zone under a compressional tectonic setting induces tectonic over-pressure. We first propose that an apparent shear zone originated from an elastic heterogeneity in the phase loop, which is the two-phase (i.e., olivine and wadsleyite) coexistence interval around the 410 km boundary within subducting oceanic lithospheres, can cause tectonic over-pressure with a range from 0.3 to 1.5 GPa. This over-pressure significantly impacts the formation of the olivine-wadsleyite phase transition. The flattening of the olivine-wadsleyite interface by over-pressure is well-resolved. Therefore, we argue that the over-pressure should be applied when analyzing the phase boundary within the subducting lithosphere. Our results provide a new insight on the interplay among the phase transition, shear zone formation and tectonic over-pressure. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们对锚定在660 km相界处的深板进行了二维数值模型,以分析构造超压的产生,这是与岩石静压力的正偏差。压缩构造背景下韧性剪切带的形成引起构造超压。我们首先提出一个明显的剪切带,它是由相环中的弹性非均质性引起的,它是俯冲海洋岩石圈内410 km边界附近两相(即橄榄石和沃兹利石)的共存区间,可能会导致构造超压。范围从0.3到1.5 GPa。该超压显着影响橄榄石-辉石相变的形成。橄榄石-辉石岩界面因超压而变平的问题得到了很好的解决。因此,我们认为分析俯冲岩石圈内的相边界时应施加超压。我们的结果为相变,剪切带形成和构造超压之间的相互作用提供了新的见解。 (C)2015 Elsevier B.V.保留所有权利。

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