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Monitoring endogenous growth of open-vent volcanoes by balancing thermal and SO2 emissions data derived from space

机译:通过平衡源自空间的热量和SO2排放数据监测开孔火山的内源性生长

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Measuring the amount of magma intruding in a volcano represents one of the main challenges of modern volcanology. While in closed-vent volcanoes this parameter is generally assessed by the inversion of deformation data, in open-vent volcanoes its measurement is more complicated and results from the balance between the magma entering and leaving the storage system. In this work we used thermal and SOsub2/sub flux data, derived from satellite measurements, to calculate the magma input and output rates of Mt. Etna between 2004 and 2010. We found that during the analysed period?more magma was supplied than erupted, resulting into an endogenous growth rate equal to 22.9?±?13.7?×?10sup6/sup msup3/sup ysup-1/sup. Notably, this unbalance was not constant in time, but showed phases of major magma accumulation and drainage acting within a compressible magma chamber. The excellent correlation?with the inflation/deflation cycles measured by ground-based GPS network suggests the thermal, SOsub2/sub flux and deformation data, can be combined to provide a quantitative analysis of magma transport inside the shallow plumbing system of Mt Etna. Given the global coverage of satellite data and the continuous improvement of sensors in orbit, we anticipate that this approach will have sufficient detail to monitor, in real time, the endogenous growth associated to other world-wide open-vent volcanoes.
机译:测量火山中侵入的岩浆量代表了现代火山学的主要挑战之一。虽然在闭孔火山中,这参数通常通过变形数据的反转来评估,在开放式发泄火山中,其测量更复杂,并且由岩浆进入和离开存储系统之间的平衡来实现。在这项工作中,我们使用了来自卫星测量的热量等 2 磁通数据,以计算MT的岩浆输入和输出速率。 2004年至2010年之间的Etna。我们发现在分析期间?提供的岩浆比爆发更多,导致内源生长速度等于22.9?±13.7?×10 6 m 3 y -1 。值得注意的是,这种不平衡在时间上不是恒定的,而是显示出在可压缩岩浆室内作用的主要岩浆积聚和排水的阶段。优异的相关性?利用地基GPS网络测量的充气/放气循环表明热量,所以 2 通量和变形数据,可以组合以提供浅管内岩浆运输的定量分析MT etna的系统。鉴于卫星数据的全球覆盖以及轨道中的传感器的持续改进,我们预计这种方法将有足够的细节,实时监测与其他全球开放式火山相关的内源性增长。

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