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首页> 外文期刊>Journal of geophysical research. Planets >Compositional Layering in Io Driven by Magmatic Segregation and Volcanism
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Compositional Layering in Io Driven by Magmatic Segregation and Volcanism

机译:成分分层体内由岩浆驱动的种族隔离和火山活动

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摘要

The compositional evolution of volcanic bodies like Io is not well understood. Magmatic segregation and volcanic eruptions transport tidal heat from Io's interior to its surface. Several observed eruptions appear to be extremely high temperature (≥1600 K), suggesting either very high degrees of melting, refractory source regions, or intensive viscous heating on ascent. To address this ambiguity, we develop a model that couples crust and mantle dynamics to a simple compositional system.We analyze the model to investigate chemical structure and evolution.We demonstrate that magmatic segregation and volcanic eruptions lead to stratification of the mantle, the extent of which depends on how easily high temperature melts from the more refractory lower mantle can migrate upwards.We propose that Io's highest temperature eruptions originate from this lower mantle region and that such eruptions act to limit the degree of compositional stratification.
机译:的成分演化火山机构Io是不清楚。种族隔离和火山喷发运输潮汐热Io的内部表面。几个观察到火山喷发似乎非常高温(≥1600 K),暗示很高程度的融化,耐火材料来源地区,或密集的粘性加热上升。为了解决这个模棱两可,我们开发一个模型这夫妻地壳和地幔动力学简单的组合系统。研究化学结构进化。隔离和火山喷发导致分层地幔,它的程度取决于容易高温融化更耐高温下地幔可以迁移向上。爆发来自下地幔区域和这样的爆发采取行动限制的程度组成的分层。

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