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首页> 外文期刊>Geophysical Research Letters >Tracking precursors and degassing by radon monitoring during major eruptions at Stromboli Volcano (Aeolian Islands, Italy) - art. no. L12308
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Tracking precursors and degassing by radon monitoring during major eruptions at Stromboli Volcano (Aeolian Islands, Italy) - art. no. L12308

机译:在斯特龙博利火山(意大利风神群岛)发生重大喷发时通过ra监测来跟踪前体并进行脱气-艺术。没有。 L12308

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摘要

[ 1] We monitored radon anomalies before, during and after the recent paroxysmal eruptions of Stromboli. Major eruptive events are preceded by relative minima in radon emissions at stations located at the base of the cone, whereas three of the summit stations reached peak values (similar to 20,000 Bq/m(3) or higher) 12 to 14 days before major eruptions, and are nearly coeval with earth tides. Radon emissions at/or above such high threshold values are proposed to result from the dynamic response of the fracture network due to degassing processes associated with magma ascent. Relative minima recorded at the base of the cone are related to fractures' self-sealing within the hydrothermal system, eventually coupled with the atmospheric stack-effect. The coexistence of the above anomalies is interpreted as the first precursory signals to major eruptive events.
机译:[1]我们监测了最近爆发的斯特龙博利爆发前,之中和之后的ra异常。在主要爆发事件之前,位于圆锥体底部的站点的stations排放相对较低,而在主要爆发之前的12至14天,其中三个高峰站点达到峰值(近似于20,000 Bq / m(3)或更高)。 ,并且几乎与潮汐并存。提出这样的高阈值或更高的emissions排放是由于与岩浆上升相关的脱气过程,由于裂缝网络的动态响应而引起的。锥体底部记录的相对最小值与热液系统中裂缝的自密封有关,最终与大气叠加效应有关。上述异常现象的共存被解释为主要爆发事件的第一个先兆信号。

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