Seismic Amplitude Ratio Analysis of the 2014-2015 Bár∂arbunga-Holuhraun Dike Propagation and Eruption

Magma is transported in brittle rock through dikes and sills. This movement may be accompanied by the release of seismic energy that can be tracked from the Earth's surface. Locating dikes and deciphering their dynamics is therefore of prime importance in understanding and potentially forecasti...

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Published in:Journal of Geophysical Research: Solid Earth
Main Authors: Caudron, Corentin, White, Robert S., Green, Robert G., Woods, Jennifer, Ágústsdóttir, Thorbjörg, Donaldson, Clare, Greenfield, Tim, Rivalta, Eleonora, Brandsdóttir, Bryndís
Format: Article in Journal/Newspaper
Language:English
Published: 2018
Subjects:
Online Access:http://hdl.handle.net/11585/775873
https://doi.org/10.1002/2017JB014660
https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2017JB014660
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author Caudron, Corentin
White, Robert S.
Green, Robert G.
Woods, Jennifer
Ágústsdóttir, Thorbjörg
Donaldson, Clare
Greenfield, Tim
Rivalta, Eleonora
Brandsdóttir, Bryndís
author2 Caudron, Corentin
White, Robert S.
Green, Robert G.
Woods, Jennifer
Ágústsdóttir, Thorbjörg
Donaldson, Clare
Greenfield, Tim
Rivalta, Eleonora
Brandsdóttir, Bryndís
author_facet Caudron, Corentin
White, Robert S.
Green, Robert G.
Woods, Jennifer
Ágústsdóttir, Thorbjörg
Donaldson, Clare
Greenfield, Tim
Rivalta, Eleonora
Brandsdóttir, Bryndís
author_sort Caudron, Corentin
collection Unknown
container_issue 1
container_start_page 264
container_title Journal of Geophysical Research: Solid Earth
container_volume 123
description Magma is transported in brittle rock through dikes and sills. This movement may be accompanied by the release of seismic energy that can be tracked from the Earth's surface. Locating dikes and deciphering their dynamics is therefore of prime importance in understanding and potentially forecasting volcanic eruptions. The Seismic Amplitude Ratio Analysis (SARA) method aims to track melt propagation using the amplitudes recorded across a seismic network without picking the arrival times of individual earthquake phases. This study validates this methodology by comparing SARA locations (filtered between 2 and 16 Hz) with the earthquake locations (same frequency band) recorded during the 2014–2015 Bár urn:x-wiley:jgrb:media:jgrb52508:jgrb52508-math-0003arbunga‐Holuhraun dike intrusion and eruption in Iceland. Integrating both approaches also provides the opportunity to investigate the spatiotemporal characteristics of magma migration during the dike intrusion and ensuing eruption. During the intrusion SARA locations correspond remarkably well to the locations of earthquakes. Several exceptions are, however, observed. (1) A low‐frequency signal was possibly associated with a subglacial eruption on 23 August. (2) A systematic retreat of the seismicity was also observed to the back of each active segment during stalled phases and was associated with a larger spatial extent of the seismic energy source. This behavior may be controlled by the dike's shape and/or by dike inflation. (3) During the eruption SARA locations consistently focused at the eruptive site. (4) Tremor‐rich signal close to ice cauldrons occurred on 3 September. This study demonstrates the power of the SARA methodology, provided robust site amplification; Quality Factors and seismic velocities are available.
format Article in Journal/Newspaper
genre Iceland
genre_facet Iceland
geographic Holuhraun
Bardarbunga
geographic_facet Holuhraun
Bardarbunga
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language English
long_lat ENVELOPE(-16.831,-16.831,64.852,64.852)
ENVELOPE(-17.528,-17.528,64.635,64.635)
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op_container_end_page 276
op_doi https://doi.org/10.1002/2017JB014660
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volume:123
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journal:JOURNAL OF GEOPHYSICAL RESEARCH. SOLID EARTH
info:eu-repo/grantAgreement/EC/FP7/308377
http://hdl.handle.net/11585/775873
doi:10.1002/2017JB014660
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spelling ftunibolognairis:oai:cris.unibo.it:11585/775873 2025-06-15T14:30:54+00:00 Seismic Amplitude Ratio Analysis of the 2014-2015 Bár∂arbunga-Holuhraun Dike Propagation and Eruption Caudron, Corentin White, Robert S. Green, Robert G. Woods, Jennifer Ágústsdóttir, Thorbjörg Donaldson, Clare Greenfield, Tim Rivalta, Eleonora Brandsdóttir, Bryndís Caudron, Corentin White, Robert S. Green, Robert G. Woods, Jennifer Ágústsdóttir, Thorbjörg Donaldson, Clare Greenfield, Tim Rivalta, Eleonora Brandsdóttir, Bryndís 2018 ELETTRONICO http://hdl.handle.net/11585/775873 https://doi.org/10.1002/2017JB014660 https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2017JB014660 eng eng info:eu-repo/semantics/altIdentifier/wos/WOS:000426132600015 volume:123 issue:1 firstpage:264 lastpage:276 numberofpages:13 journal:JOURNAL OF GEOPHYSICAL RESEARCH. SOLID EARTH info:eu-repo/grantAgreement/EC/FP7/308377 http://hdl.handle.net/11585/775873 doi:10.1002/2017JB014660 https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2017JB014660 info:eu-repo/semantics/openAccess volcanology seismology magma migration monitoring dike propagation Bardarbunga‐Holuhraun info:eu-repo/semantics/article 2018 ftunibolognairis https://doi.org/10.1002/2017JB014660 2025-05-28T08:22:16Z Magma is transported in brittle rock through dikes and sills. This movement may be accompanied by the release of seismic energy that can be tracked from the Earth's surface. Locating dikes and deciphering their dynamics is therefore of prime importance in understanding and potentially forecasting volcanic eruptions. The Seismic Amplitude Ratio Analysis (SARA) method aims to track melt propagation using the amplitudes recorded across a seismic network without picking the arrival times of individual earthquake phases. This study validates this methodology by comparing SARA locations (filtered between 2 and 16 Hz) with the earthquake locations (same frequency band) recorded during the 2014–2015 Bár urn:x-wiley:jgrb:media:jgrb52508:jgrb52508-math-0003arbunga‐Holuhraun dike intrusion and eruption in Iceland. Integrating both approaches also provides the opportunity to investigate the spatiotemporal characteristics of magma migration during the dike intrusion and ensuing eruption. During the intrusion SARA locations correspond remarkably well to the locations of earthquakes. Several exceptions are, however, observed. (1) A low‐frequency signal was possibly associated with a subglacial eruption on 23 August. (2) A systematic retreat of the seismicity was also observed to the back of each active segment during stalled phases and was associated with a larger spatial extent of the seismic energy source. This behavior may be controlled by the dike's shape and/or by dike inflation. (3) During the eruption SARA locations consistently focused at the eruptive site. (4) Tremor‐rich signal close to ice cauldrons occurred on 3 September. This study demonstrates the power of the SARA methodology, provided robust site amplification; Quality Factors and seismic velocities are available. Article in Journal/Newspaper Iceland Unknown Holuhraun ENVELOPE(-16.831,-16.831,64.852,64.852) Bardarbunga ENVELOPE(-17.528,-17.528,64.635,64.635) Journal of Geophysical Research: Solid Earth 123 1 264 276
spellingShingle volcanology seismology magma migration monitoring dike propagation Bardarbunga‐Holuhraun
Caudron, Corentin
White, Robert S.
Green, Robert G.
Woods, Jennifer
Ágústsdóttir, Thorbjörg
Donaldson, Clare
Greenfield, Tim
Rivalta, Eleonora
Brandsdóttir, Bryndís
Seismic Amplitude Ratio Analysis of the 2014-2015 Bár∂arbunga-Holuhraun Dike Propagation and Eruption
title Seismic Amplitude Ratio Analysis of the 2014-2015 Bár∂arbunga-Holuhraun Dike Propagation and Eruption
title_full Seismic Amplitude Ratio Analysis of the 2014-2015 Bár∂arbunga-Holuhraun Dike Propagation and Eruption
title_fullStr Seismic Amplitude Ratio Analysis of the 2014-2015 Bár∂arbunga-Holuhraun Dike Propagation and Eruption
title_full_unstemmed Seismic Amplitude Ratio Analysis of the 2014-2015 Bár∂arbunga-Holuhraun Dike Propagation and Eruption
title_short Seismic Amplitude Ratio Analysis of the 2014-2015 Bár∂arbunga-Holuhraun Dike Propagation and Eruption
title_sort seismic amplitude ratio analysis of the 2014-2015 bár∂arbunga-holuhraun dike propagation and eruption
topic volcanology seismology magma migration monitoring dike propagation Bardarbunga‐Holuhraun
topic_facet volcanology seismology magma migration monitoring dike propagation Bardarbunga‐Holuhraun
url http://hdl.handle.net/11585/775873
https://doi.org/10.1002/2017JB014660
https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2017JB014660