Deep long period seismicity preceding and during the 2021 Fagradalsfjall eruption, Iceland
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作者:
Tim Greenfield
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机构:University of Cambridge,Bullard Laboratories
Tim Greenfield
Tom Winder
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机构:University of Cambridge,Bullard Laboratories
Tom Winder
Nicholas Rawlinson
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机构:University of Cambridge,Bullard Laboratories
Nicholas Rawlinson
John Maclennan
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机构:University of Cambridge,Bullard Laboratories
John Maclennan
Robert S. White
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机构:University of Cambridge,Bullard Laboratories
Robert S. White
Thorbjörg Ágústsdóttir
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机构:University of Cambridge,Bullard Laboratories
Thorbjörg Ágústsdóttir
Conor A. Bacon
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机构:University of Cambridge,Bullard Laboratories
Conor A. Bacon
Bryndís Brandsdóttir
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机构:University of Cambridge,Bullard Laboratories
Bryndís Brandsdóttir
Eva P. S. Eibl
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机构:University of Cambridge,Bullard Laboratories
Eva P. S. Eibl
Esme Glastonbury-Southern
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机构:University of Cambridge,Bullard Laboratories
Esme Glastonbury-Southern
Egill Árni Gudnason
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机构:University of Cambridge,Bullard Laboratories
Egill Árni Gudnason
Gylfi Páll Hersir
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机构:University of Cambridge,Bullard Laboratories
Gylfi Páll Hersir
Josef Horálek
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机构:University of Cambridge,Bullard Laboratories
Josef Horálek
机构:
[1] University of Cambridge,Bullard Laboratories
[2] Iceland GeoSurvey,Lamont
[3] ÍSOR,Doherty Earth Observatory
[4] Columbia University,Institute of Earth Sciences, Science Institute
[5] University of Iceland,Institute of Geosciences
[6] University of Potsdam,undefined
[7] Institute of Geophysics,undefined
来源:
Bulletin of Volcanology
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84卷
关键词:
Deep long-period earthquakes;
Magma plumbing system;
Iceland;
Reykjanes;
Low-frequency;
Fagradalsfjall;
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摘要:
We use a dense seismic network on the Reykjanes Peninsula, Iceland, to image a group of earthquakes at 10–12 km depth, 2 km north-east of 2021 Fagradalsfjall eruption site. These deep earthquakes have a lower frequency content compared to earthquakes located in the upper, brittle crust and are similar to deep long period (DLP) seismicity observed at other volcanoes in Iceland and around the world. We observed several swarms of DLP earthquakes between the start of the study period (June 2020) and the initiation of the 3-week-long dyke intrusion that preceded the eruption in March 2021. During the eruption, DLP earthquake swarms returned 1 km SW of their original location during periods when the discharge rate or fountaining style of the eruption changed. The DLP seismicity is therefore likely to be linked to the magma plumbing system beneath Fagradalsfjall. However, the DLP seismicity occurred ~ 5 km shallower than where petrological modelling places the near-Moho magma storage region in which the Fagradalsfjall lava was stored. We suggest that the DLP seismicity was triggered by the exsolution of CO2-rich fluids or the movement of magma at a barrier to the transport of melt in the lower crust. Increased flux through the magma plumbing system during the eruption likely adds to the complexity of the melt migration process, thus causing further DLP seismicity, despite a contemporaneous magma channel to the surface.
机构:
Univ Calif San Diego, Scripps Inst Oceanog, Inst Geophys & Planetary Phys, La Jolla, CA 92093 USAUniv Calif San Diego, Scripps Inst Oceanog, Inst Geophys & Planetary Phys, La Jolla, CA 92093 USA
Matoza, Robin S.
Chouet, Bernard A.
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机构:
US Geol Survey, Menlo Pk, CA 94025 USAUniv Calif San Diego, Scripps Inst Oceanog, Inst Geophys & Planetary Phys, La Jolla, CA 92093 USA