Thick crust, hydrous magmas, and the paradox of voluminous cold magmatism

IF 2.5 Q2 Earth and Planetary Sciences
Cin-Ty A. Lee, Boda Liu
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引用次数: 1

Abstract

Andesites are refined and “cold” magmas compared to their basaltic parents, yet large volumes of andesites are generated at continental arcs. We show that large andesitic plutons are favored when arc crust attains a thickness of ~60 km while mafic plutons are small and favored when arc crust is thin. Using simple thermal models, we show that large, long-lived and relatively cold partially molten zones, sustained by recharge of hydrous basaltic magmas, are favored at depth when arc crust is thick due to the reduced efficiency of heat loss with increasing crustal thickness. Thin crust and drier magmas favor hotter and thinner partially molten zones. Our study provides an explanation for the apparent paradox that the most voluminous magmas in continental arc settings are cold. The origin of andesites may be linked to the interplay between magmatic differentiation, the availability of water, and the processes that control crustal thickness.
厚地壳、含水岩浆和大量冷岩浆作用的悖论
与玄武岩相比,安山岩是一种精炼而“冷”的岩浆,但大量安山岩是在大陆弧上形成的。研究表明,当弧壳厚度达到~60 km时,有利于形成大型安山岩岩体;而当弧壳厚度较薄时,有利于形成小型基性岩体。利用简单的热模型,我们发现,当弧壳较厚时,由于热损失效率随地壳厚度的增加而降低,由含水玄武岩岩浆补给维持的较大、寿命较长且相对较冷的部分熔融带更有利。较薄的地壳和较干的岩浆有利于较热、较薄的部分熔融带。我们的研究为大陆弧环境中体积最大的岩浆是冷岩浆这一明显的悖论提供了解释。安山岩的起源可能与岩浆分异、水的可用性和控制地壳厚度的过程之间的相互作用有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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