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Dyke intrusion between neighbouring arc volcanoes responsible for 2017 pre-eruptive seismic swarm at Agung

机译:阿贡2017年喷发前地震群附近相邻弧形火山之间的堤防入侵

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摘要

Forecasting explosive eruptions relies on using monitoring data to interpret the patterns and timescales of magma transport and mixing. In September 2017, a distal seismic swarm triggered the evacuation of around 140,000 people from Agung volcano, Bali. From satellite imagery and 3D numerical models, we show that seismicity was associated with a deep, sub-vertical magma intrusion between Agung and its neighbour Batur. This, combined with observations of the 1963 eruption which caused more than thousand fatalities, suggests a vertically and laterally interconnected system experiencing recurring magma mixing. The geometry of the 2017 dyke is consistent with transport from a deep mafic source to a shallow andesitic reservoir controlled by stresses induced by the topographic load, but not the regional tectonics. The ongoing interactions between Agung and Batur have important implications for interpretation of distal seismicity, the links between closely spaced arc volcanoes, and the potential for cascading hazards.
机译:预测爆炸爆发依赖于使用监测数据来解释岩浆运输和混合的模式和时标。 2017年9月,一支远端地震群触发了巴厘岛阿贡火山约14万人的撤离。从卫星图像和3D数值模型可以看出,地震活动与阿贡及其邻近的巴图尔之间的深,亚垂直岩浆侵入有关。结合对1963年喷发造成的成千上万人死亡的观察结果,表明一个垂直和横向互连的系统经历了反复的岩浆混合。 2017年堤坝的几何形状与由深部铁镁质岩源向浅层安山岩储层的运移相一致,该运移受地形载荷(而非区域构造)引起的应力控制。阿贡和巴图尔之间正在进行的相互作用,对远距离地震活动的解释,弧形火山之间的联系紧密以及潜在的级联危害具有重要意义。

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