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从核幔边界到岩石圈的超级地幔柱:对热通量的影响。

Superplumes from the core-mantle boundary to the lithosphere: implications for heat flux.

作者信息

Romanowicz Barbara, Gung Yuancheng

机构信息

Seismological Laboratory, University of California, Berkeley, 215 McCone Hall, Berkeley, CA 94720, USA.

出版信息

Science. 2002 Apr 19;296(5567):513-6. doi: 10.1126/science.1069404.

Abstract

Three-dimensional modeling of upper-mantle anelastic structure reveals that thermal upwellings associated with the two superplumes, imaged by seismic elastic tomography at the base of the mantle, persist through the upper-mantle transition zone and are deflected horizontally beneath the lithosphere. This explains the unique transverse shear wave isotropy in the central Pacific. We infer that the two superplumes may play a major and stable role in supplying heat and horizontal flow to the low-viscosity asthenospheric channel, lubricating plate motions and feeding hot spots. We suggest that more heat may be carried through the core-mantle boundary than is accounted for by hot spot fluxes alone.

摘要

上地幔滞弹性结构的三维建模显示,与两个超级地幔柱相关的热上升流,在地幔底部通过地震弹性层析成像成像,持续穿过上地幔过渡带,并在岩石圈下方发生水平偏转。这解释了中太平洋独特的横向剪切波各向异性。我们推断,这两个超级地幔柱可能在为低粘度软流层通道提供热量和水平流动、润滑板块运动以及为热点提供能量方面发挥主要且稳定的作用。我们认为,通过核幔边界传输的热量可能比仅由热点通量所解释的要多。

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