结晶糊化过程和地壳岩浆作用

Madeleine C. S. Humphreys, Olivier Namur, Wendy A. Bohrson, Pierre Bouilhol, George F. Cooper, Kari M. Cooper, Christian Huber, C. Johan Lissenberg, Eduardo Morgado, Frank J. Spera
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引用次数: 0

摘要

地球上的大部分岩浆以广泛的晶体糊状系统的形式储存,然而,在糊状系统中运行的物理过程的普遍性及其在火山活跃地区的重要性仍然是一个谜。本文综述了晶体糊化体系的物理性质和关键过程。火山系统的形成、演化和衰亡,在热量供应和损失的调节下,可以在不同的空间和时间产生不同的泥化过程的普遍性。此外,区域构造改变了糊状物的性质,在凉爽潮湿的环境中,糊状物具有持久的残余熔体,比在炎热干燥的环境中允许更有效的熔体分离。浆糊的分解导致结晶浆糊物质被动员或被带入熔岩并喷发,这为确定火山活跃地区某些浆糊过程的时间尺度和化学性质提供了机会。浆糊系统可以在长度范围上观察到,范围从公里(使用地质测绘)到微米(使用晶体结构)。因此,很难整合不同领域的数据和解释。热力学、结构分析、地球化学、建模和实验的改进整合,以及来自邻近领域(如多孔介质动力学、工程和冶金)的投入,将有助于提高对泥状系统的理解,并最终提高对活火山和休眠火山系统的危害评估。晶体糊状过程是岩浆分异、火山系统行为和某些矿产资源的关键。本文讨论了泥岩的形成、恢复和喷发过程,以及构造和地壳热成熟度对这些过程的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Crystal mush processes and crustal magmatism

Crystal mush processes and crustal magmatism
Much of Earth’s magma is stored as extensive crystal mush systems, yet the prevalence of physical processes operating within mushes and their importance in volcanically active regions remain enigmatic. In this Review, we explore the physical properties and key processes of crystal mush systems. The initiation, evolution and decline of volcanic systems, modulated by heat supply and loss, could generate differences in the prevalence of mush processes through space and time. Additionally, regional tectonics alter mush properties, with mushes in cool wet settings having persistent residual melt, permitting more effective melt segregation than in hot dry settings. Disaggregation of mushes results in crystal mush material being mobilized or entrained into lavas and erupted, presenting opportunities to define the timescales and chemistry of some mush processes in volcanically active regions. Mush systems can be observed on length scales ranging from kilometres (using geological mapping) to micrometres (using crystal textures). Therefore, it is difficult to integrate data and interpretations across different fields. Improved integration of thermodynamics, textural analysis, geochemistry, modelling and experiments, alongside inputs from adjacent fields such as porous media dynamics, engineering and metallurgy will help to advance understanding of mush systems and ultimately improve hazard evaluation at active and dormant volcanic systems. Crystal mush processes are key to magmatic differentiation, volcanic system behaviour and some mineral resources. This Review discusses the processes involved in mush formation, rejuvenation and eruption, and how tectonics and crustal thermal maturity impacts these processes.
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