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整体地幔对流与板块构造共同保存了上地幔地球化学的长期全球模式。

Whole-mantle convection with tectonic plates preserves long-term global patterns of upper mantle geochemistry.

机构信息

Department of Geology, University of Leicester, Leicester, LE1 7RH, UK.

School of Earth and Ocean Sciences, Cardiff University, Cardiff, CF10 3AT, Wales, UK.

出版信息

Sci Rep. 2017 May 12;7(1):1870. doi: 10.1038/s41598-017-01816-y.

Abstract

The evolution of the planetary interior during plate tectonics is controlled by slow convection within the mantle. Global-scale geochemical differences across the upper mantle are known, but how they are preserved during convection has not been adequately explained. We demonstrate that the geographic patterns of chemical variations around the Earth's mantle endure as a direct result of whole-mantle convection within largely isolated cells defined by subducting plates. New 3D spherical numerical models embedded with the latest geological paleo-tectonic reconstructions and ground-truthed with new Hf-Nd isotope data, suggest that uppermost mantle at one location (e.g. under Indian Ocean) circulates down to the core-mantle boundary (CMB), but returns within ≥100 Myrs via large-scale convection to its approximate starting location. Modelled tracers pool at the CMB but do not disperse ubiquitously around it. Similarly, mantle beneath the Pacific does not spread to surrounding regions of the planet. The models fit global patterns of isotope data and may explain features such as the DUPAL anomaly and long-standing differences between Indian and Pacific Ocean crust. Indeed, the geochemical data suggests this mode of convection could have influenced the evolution of mantle composition since 550 Ma and potentially since the onset of plate tectonics.

摘要

板块构造过程中行星内部的演化受地幔内缓慢对流的控制。已知地幔上部存在全球性的地球化学差异,但它们在对流过程中是如何保存下来的还没有得到充分解释。我们证明,地球地幔周围化学变化的地理模式是地幔整体对流的直接结果,而地幔整体对流主要发生在由俯冲板块定义的、基本上相互隔离的单元内。新的三维球形数值模型嵌入了最新的地质古构造重建,并通过新的 Hf-Nd 同位素数据进行了实地检验,结果表明,一个位置(例如印度洋下方)的上地幔向下循环到核幔边界(CMB),但在 100 百万年以上的时间内通过大规模对流返回其大致起始位置。模型示踪剂在 CMB 处聚集,但不会在其周围均匀扩散。同样,太平洋下方的地幔也不会扩散到行星的周围区域。这些模型符合同位素数据的全球模式,可能解释了 DUPAL 异常和印度洋与太平洋地壳之间长期存在的差异等特征。事实上,地球化学数据表明,这种对流模式可能自 5.5 亿年前以来,甚至可能自板块构造开始以来,就一直影响着地幔成分的演化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5aab/5431867/bc8da8a52e54/41598_2017_1816_Fig1_HTML.jpg

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