地质学
火山口
火山
岩浆
地震学
岩浆房
爆炸性喷发
火山学
撞击坑
水深测量
侧向喷发
渗出性喷发
海洋学
天体生物学
物理
作者
Hélène Le Mével,Craig Miller,Marta Ribó,Shane J. Cronin,Taaniela Kula
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-12-15
卷期号:9 (50): eadh3156-eadh3156
被引量:13
标识
DOI:10.1126/sciadv.adh3156
摘要
One of the largest explosive eruptions instrumentally recorded occurred at Hunga volcano on 15 January 2022. The magma plumbing system under this volcano is unexplored because of inherent difficulties caused by its submarine setting. We use marine gravity data derived from satellite altimetry combined with multibeam bathymetry to model the architecture and dynamics of the magmatic system before and after the January 2022 eruption. We provide geophysical evidence for substantial high–melt content magma accumulation in three reservoirs at shallow depths (2 to 10 kilometers) under the volcano. We estimate that less than ~30% of the existing magma was evacuated by the main eruptive phases, enough to trigger caldera collapse. The eruption and caldera collapse reorganized magma storage, resulting in an increased connectivity between the two spatially distinct reservoirs. Modeling global satellite altimetry–derived gravity data at undersea volcanoes offer a promising reconnaissance tool to probe the subsurface for eruptible magma.
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