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On the feasibility of magma fracture within volcanic conduits: Constraints from earthquake data and empirical modelling of magma viscosity

机译:关于火山岩导管内岩浆破裂的可行性:地震数据的约束和岩浆粘度的经验模型

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摘要

In the last decade several studies have indicated that magma within volcanic conduits can undergo repeated failure and healing, thus, providing a realistic source mechanism for the peculiar sequences of low-frequency earthquakes that often announce eruptions. Although geological observations, laboratory experiments, and numerical modelling support such a hypothesis, the links between geophysical observations and the proposed models remain qualitative. This study focuses on providing constraints to the relationship between the occurrence of repeating earthquakes and magma fracture at andesite volcanoes. Empirical modelling of viscosity is incorporated into the fundamental physics of magma fracture in order to assess whether and where the conditions for brittle failure are met within volcanic conduits. A case study from the 1995-ongoing eruption of Soufrire Hills Volcano, Montserrat, is presented. The locations of earthquakes from a pre-eruptive low-frequency seismic swarm illuminate a relatively compact source volume at depths of 100-300 meters below sea level. Viscosity modelling confirms that the Soufrire Hills magma could rupture at those depths.
机译:在过去的十年中,几项研究表明,火山管道内的岩浆会经历反复的破坏和复原,因此,为经常宣布爆发的低频地震的特殊序列提供了现实的震源机制。尽管地质观测,实验室实验和数值模拟都支持这种假设,但地球物理观测与所提出的模型之间的联系仍然是定性的。这项研究的重点是为重复地震的发生与安山岩火山岩浆破裂之间的关系提供约束。黏度的经验模型被纳入岩浆破裂的基本物理学中,以评估火山管道内是否满足脆性破坏的条件,以及在何处满足脆性破坏的条件。本文以1995年蒙特塞拉特的Soufrire Hills火山爆发为例。喷发前的低频地震群的地震位置在海平面以下100-300米的深度照亮了相对紧凑的震源。粘度模型证实,Soufrire Hills岩浆可能在这些深度处破裂。

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