坎布里别哈火山的火山震动与熔体成分的变化有关

IF 15.7 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Marc-Antoine Longpré, Samantha Tramontano, Matthew J. Pankhurst, Diana C. Roman, Miriam C. Reiss, Franco Cortese, Mike R. James, Laura Spina, Fátima Rodríguez, Beverley Coldwell, Alba Martín-Lorenzo, Olivia Barbee, Luca D’Auria, Katy J. Chamberlain, Jane H. Scarrow
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引用次数: 0

摘要

预测火山爆发的开始、演变和结束依赖于对与岩浆成因过程有关的监测数据——特别是地震信号,如持续的火山震动——的解释。岩石学有助于回顾性地建立这种联系,但通常缺乏与地球物理数据直接相关所需的时间分辨率。在这里,我们报告了在2021年加那利群岛拉帕尔马Cumbre Vieja火山Tajogaite喷发期间持续采样的火山灰中玻璃的主要和挥发性元素组成。这些数据以每日的时间分辨率揭示了从深度提供的熔体的化学演变。直到活动的第10周,喷发的熔体成分逐渐变得更加原始,但这一趋势的急剧逆转标志着地幔岩浆供应的减少,这是喷发结束的前兆信号。研究发现,熔体SiO2含量与窄频带火山震颤振幅呈正相关。从模拟和模型计算中推断出的震颤特征表明,熔体粘度控制的脱气动力学产生了震颤振幅的变化。我们的研究结果显示了一种监测和预测工具的前景,这种工具能够快速识别火山爆发的恢复和减弱阶段,并说明熔体成分的细微变化如何转化为地球物理信号的大变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Shifting melt composition linked to volcanic tremor at Cumbre Vieja volcano

Shifting melt composition linked to volcanic tremor at Cumbre Vieja volcano

Shifting melt composition linked to volcanic tremor at Cumbre Vieja volcano
Forecasting the onset, evolution and end of volcanic eruptions relies on interpretation of monitoring data—particularly seismic signals, such as persistent volcanic tremor—in relation to causative magmatic processes. Petrology helps establish such links retrospectively but typically lacks the required temporal resolution to directly relate to geophysical data. Here we report major and volatile element compositions of glass from volcanic ash continuously sampled throughout the 2021 Tajogaite eruption of Cumbre Vieja volcano, La Palma, Canary Islands. The data reveal the evolving chemistry of melts supplied from depth at a daily temporal resolution. Erupted melt compositions become progressively more primitive until the tenth week of activity, but a sharp reversal of this trend then marks the decline of mantle magma supply and a precursory signal to the eruption end. We find that melt SiO2 content is positively correlated with the amplitude of narrow-band volcanic tremor. Tremor characteristics, inferences from simulations and model calculations point to melt viscosity-controlled degassing dynamics generating variations in tremor amplitude. Our results show promise for a monitoring and forecasting tool capable of quickly identifying rejuvenated and waning phases of volcanic eruptions and illustrate how subtle changes in melt composition may translate to large shifts in geophysical signals. The SiO2 contents of erupted volcanic melts are correlated with persistent seismic signals that accompany eruptions—volcanic tremor—and may represent an eruption monitoring tool, according to a study of volcanic ash glasses from Cumbre Vieja volcano.
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来源期刊
Nature Geoscience
Nature Geoscience 地学-地球科学综合
CiteScore
26.70
自引率
1.60%
发文量
187
审稿时长
3.3 months
期刊介绍: Nature Geoscience is a monthly interdisciplinary journal that gathers top-tier research spanning Earth Sciences and related fields. The journal covers all geoscience disciplines, including fieldwork, modeling, and theoretical studies. Topics include atmospheric science, biogeochemistry, climate science, geobiology, geochemistry, geoinformatics, remote sensing, geology, geomagnetism, paleomagnetism, geomorphology, geophysics, glaciology, hydrology, limnology, mineralogy, oceanography, paleontology, paleoclimatology, paleoceanography, petrology, planetary science, seismology, space physics, tectonics, and volcanology. Nature Geoscience upholds its commitment to publishing significant, high-quality Earth Sciences research through fair, rapid, and rigorous peer review, overseen by a team of full-time professional editors.
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