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Possible deep connection between volcanic systems evidenced by sequential assimilation of geodetic data

机译:大地数据的顺序同化证明火山系统之间可能存在深层联系

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摘要

The existence of possible deep connections between nearby volcanoes has so far only been formulated on the basis of correlation in their eruptive activities or geochemical arguments. The use of geodetic data to monitor the deep dynamics of magmatic systems and the possible interference between them has remained limited due to the lack of techniques to follow transient processes. Here, for the first time, we use sequential data assimilation technique (Ensemble Kalman Filter) on ground displacement data to evaluate a possible interplay between the activities of Grímsvötn and Bárðarbunga volcanoes in Iceland. Using a two-reservoir dynamical model for the Grímsvötn plumbing system and assuming a fixed geometry and constant magma properties, we retrieve the temporal evolution of the basal magma inflow beneath Grímsvötn that drops by up to 85% during the 10 months preceding the initiation of the Bárðarbunga rifting event. We interpret the loss of at least 0.016 km3 in the magma supply of Grímsvötn as a consequence of magma accumulation beneath Bárðarbunga and subsequent feeding of the Holuhraun eruption 41 km away. We demonstrate that, in addition to its interest for predicting volcanic eruptions, sequential assimilation of geodetic data has a unique potential to give insights into volcanic system roots.
机译:到目前为止,附近火山之间可能存在的深层联系只是根据其火山喷发活动或地球化学论据之间的相关性来提出的。由于缺乏跟踪瞬变过程的技术,利用大地测量数据监测岩浆系统的深层动力学及其之间可能存在的干扰仍然受到限制。在这里,我们首次在地面位移数据上使用了顺序数据同化技术(Ensemble Kalman Filter),以评估冰岛Grímsvötn和Bárðarbunga火山活动之间可能存在的相互作用。使用Grímsvötn管道系统的两个储层动力学模型,并假设几何形状固定且岩浆特性恒定,我们检索到Grímsvötn下方基底岩浆流入的时间演化,在该岩浆启动前的10个月内下降了85%。 Bárðarbunga裂谷活动。我们认为,由于Bárðarbunga下方的岩浆堆积和随后的41 km km外的Holuhraun喷发,岩浆在Grímsvötn的岩浆供应中损失了至少0.016 km 3 。我们证明,除了其对预测火山爆发的兴趣外,大地数据的连续同化具有独特的潜力,可以深入了解火山系统的根源。

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