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上地幔中由于相变导致的底辟构造的发育。

Development of diapiric structures in the upper mantle due to phase transitions.

作者信息

Liu M, Yuen D A, Zhao W, Honda S

出版信息

Science. 1991 Jun 28;252(5014):1836-9. doi: 10.1126/science.252.5014.1836.

Abstract

Solid-state phase transitions in time-dependent mantle convection can induce diapiric flows in the upper mantle. When a deep mantle plume rises toward phase boundaries in the upper mantle, the changes in the local thermal buoyancy, local heat capacity, and latent heat associated with the phase change at a depth of 670 kilometers tend to pinch off the plume head from the feeding stem and form a diapir. This mechanism may explain episodic hot spot volcanism. The nature of the multiple phase boundaries at the boundary between the upper and lower mantle may control the fate of deep mantle plumes, allowing hot plumes to go through and retarding the tepid ones.

摘要

随时间变化的地幔对流中的固态相变可在上地幔中诱发底辟流。当深部地幔柱向上朝着上地幔中的相界上升时,与670千米深处的相变相关的局部热浮力、局部热容量和潜热的变化往往会使羽流头部与供给茎部脱离,并形成一个底辟。这种机制可能解释了间歇性热点火山活动。上地幔和下地幔边界处多个相界的性质可能控制着深部地幔柱的命运,使热柱能够通过,而使温柱受阻。

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