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羽状物质可能反映下地幔的复杂流变学特性。

Fat Plumes May Reflect the Complex Rheology of the Lower Mantle.

作者信息

Davaille A, Carrez Ph, Cordier P

机构信息

Laboratoire FAST CNRS/University of Paris-Sud/University of Paris-Saclay Orsay France.

University of Lille, INRA, ENSCL, UMR 8207-UMET-Unite Materiaux et Transformations Lille France.

出版信息

Geophys Res Lett. 2018 Feb 16;45(3):1349-1354. doi: 10.1002/2017GL076575. Epub 2018 Feb 12.

Abstract

Recent tomographic imaging of the mantle below major hot spots shows slow seismic velocities extending down to the core-mantle boundary, confirming the existence of mantle plumes. However, these plumes are much thicker than previously thought. Using new laboratory experiments and scaling laws, we show that thermal plumes developing in a visco-plastic fluid present much larger diameters than plumes developing in a Newtonian fluid. Such a rheology requiring a yield stress is consistent with a lower mantle predominantly deforming by pure dislocation climb. Yield stress values between 1 and 10 MPa, implying dislocation densities between 10 and 10 m, would be sufficient to reproduce the plumes morphology observed in tomographic images.

摘要

近期对主要热点下方地幔的层析成像显示,低速地震波速向下延伸至核幔边界,证实了地幔柱的存在。然而,这些地幔柱比之前认为的要厚得多。通过新的实验室实验和标度律,我们发现,在粘塑性流体中形成的热柱直径比在牛顿流体中形成的热柱大得多。这种需要屈服应力的流变学与下地幔主要通过纯位错攀移而变形是一致的。1至10兆帕的屈服应力值,意味着位错密度在10至10之间,足以重现层析图像中观察到的地幔柱形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cecd/5993220/8444aabb9bc3/GRL-45-1349-g001.jpg

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