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A model of volcanic magma transport by fracturing stress mechanisms

机译:断裂应力机制下的火山岩浆运移模型

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摘要

[1] Understanding the mechanisms of magma ascent preceding eruptions, and in particular the subvolcanic system that stores and transports magma to the surface, is of crucial relevance for hazard and risk assessment. We propose here a statistical model describing the rise of magma from the reservoir through the transport region via stress induced fracturing mechanisms of the medium. The model reproduces the general statistical properties of erupted volume, P( V), and inter-eruption time, P(t), found in catalogue data for closed conduit volcanoes. We also investigate conditional distribution ( e. g., the probability, P( V vertical bar t), to have a volume, V, erupted after a waiting time, t), which can have important practical implications.
机译:[1]了解岩浆在爆发前的上升机制,尤其是将岩浆储存和运输到地表的火山岩下系统,对于危害和风险评估至关重要。我们在这里提出一种统计模型,该模型描述了通过压力引起的介质压裂机制从储层穿过运输区域的岩浆上升。该模型再现了在封闭导管火山的目录数据中发现的喷发量P(V)和喷发时间P(t)的一般统计特性。我们还研究了条件分布(例如,概率P(V垂直条形t)在等待时间t之后具有体积V的爆发),这可能具有重要的实际意义。

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