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Seismic precursors of a basaltic paroxysmal explosion track deep gas accumulation and slug upraise

机译:玄武质阵发性爆炸的地震前兆跟踪深层气藏和段塞上升

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Basaltic volcanoes, though fed with low-viscosity magma, occasionally produce sudden paroxysmal explosions that are unforecasted and whose triggering mechanism remains poorly elucidated. Here we report on the first detection of seismic signals precursory to such an explosion on 5 April 2003, at Stromboli volcano (Italy). This strongest event in the past 73 years was preceded by —25 h of seismic tremor variation, broadly coincident with strong geochemical anomalies in crater plume emissions, followed by —15 h of tilt-related long-period inflation pulses of increasing amplitude. These precursory signals are best explained by accelerating growth and leakage of a bubble melt "foam" layer formed at —10 km depth, whose collapse triggered the fast ascent of CO_2-rich gas slugs and then the explosion. Our results open new perspectives for the forecasting of such paroxysmal explosions and associated hazards.
机译:玄武岩火山虽然充斥着低粘度的岩浆,但偶尔会产生突如其来的突发性爆炸,这是无法预料的,​​其触发机制仍然难以阐明。在这里,我们报告有关在2003年4月5日在意大利斯特龙博利火山(Stromboli volcano)(意大利)发生的爆炸之前的地震信号的首次检测。在过去73年中最强烈的事件发生之前,地震震颤变化出现了25小时,与火山口羽流排放的强烈地球化学异常相吻合,随后是与倾斜有关的,持续时间振幅不断增大的长周期充气脉冲出现了15小时。可以通过加速在10 km深度处形成的气泡熔体“泡沫”层的生长和泄漏来更好地解释这些先兆信号,该泡沫熔体层的坍塌触发了富含CO_2的气团的快速上升,然后发生了爆炸。我们的结果为此类阵发性爆炸和相关危险的预测开辟了新的前景。

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