Dynamical changes in seismic properties prior to, during, and after the 2014–2015 Holuhraun eruption, Iceland

When a volcano is monitored using only a single discipline or a single seismic station, it becomes important to harvest information from the limited data set. Changes in the seismic complexity could reveal a dynamic change due to magma propagation. We evaluated permutation entropy (PE) and phase per...

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Published in:Natural Hazards and Earth System Sciences
Main Authors: Sudibyo, Maria R. P., Eibl, Eva P. S. (Prof. Dr.), Hainzl, Sebastian (Dr.), Ohrnberger, Matthias (Dr.)
Format: Article in Journal/Newspaper
Language:English
Published: 2024
Subjects:
Online Access:https://publishup.uni-potsdam.de/frontdoor/index/index/docId/66795
https://doi.org/10.5194/nhess-24-4075-2024
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author Sudibyo, Maria R. P.
Eibl, Eva P. S. (Prof. Dr.)
Hainzl, Sebastian (Dr.)
Ohrnberger, Matthias (Dr.)
author_facet Sudibyo, Maria R. P.
Eibl, Eva P. S. (Prof. Dr.)
Hainzl, Sebastian (Dr.)
Ohrnberger, Matthias (Dr.)
author_sort Sudibyo, Maria R. P.
collection University of Potsdam: publish.UP
container_issue 11
container_start_page 4075
container_title Natural Hazards and Earth System Sciences
container_volume 24
description When a volcano is monitored using only a single discipline or a single seismic station, it becomes important to harvest information from the limited data set. Changes in the seismic complexity could reveal a dynamic change due to magma propagation. We evaluated permutation entropy (PE) and phase permutation entropy (PPE) to monitor the 2014–2015 Holuhraun eruption in Iceland. These methods provide fast and robust quantification of time series complexity. We additionally calculated the instantaneous frequency (IF), commonly used to monitor the frequency changes in a non-stationary signal; the root-mean square (RMS); and the root-median square (RMeS) of the seismic amplitude. We observed distinct changes in the temporal variation in PE, PPE, and IF, which are consistent with the changing state from quiescence to magma propagation and then to eruption. During the eruption, PE and PPE fit the lava discharge rate, showing their potential to forecast the duration of the eruption. While one parameter may be more sensitive to one stage, the other may respond better to another stage. Therefore, combining them may provide more reliable information. Cluster analysis of these combined parameters shows clusters consistent with the expert interpretation, confirming the power of these parameters to distinguish different eruption stages.
format Article in Journal/Newspaper
genre Iceland
genre_facet Iceland
geographic Holuhraun
geographic_facet Holuhraun
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op_doi https://doi.org/10.5194/nhess-24-4075-2024
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spelling ftubpotsdam:oai:kobv.de-opus4-uni-potsdam:66795 2025-04-20T14:39:16+00:00 Dynamical changes in seismic properties prior to, during, and after the 2014–2015 Holuhraun eruption, Iceland Sudibyo, Maria R. P. Eibl, Eva P. S. (Prof. Dr.) Hainzl, Sebastian (Dr.) Ohrnberger, Matthias (Dr.) 2024-11-27 https://publishup.uni-potsdam.de/frontdoor/index/index/docId/66795 https://doi.org/10.5194/nhess-24-4075-2024 eng eng https://creativecommons.org/licenses/by/4.0/ info:eu-repo/semantics/closedAccess ddc:910 Institut für Geowissenschaften article doc-type:article 2024 ftubpotsdam https://doi.org/10.5194/nhess-24-4075-2024 2025-03-25T05:06:47Z When a volcano is monitored using only a single discipline or a single seismic station, it becomes important to harvest information from the limited data set. Changes in the seismic complexity could reveal a dynamic change due to magma propagation. We evaluated permutation entropy (PE) and phase permutation entropy (PPE) to monitor the 2014–2015 Holuhraun eruption in Iceland. These methods provide fast and robust quantification of time series complexity. We additionally calculated the instantaneous frequency (IF), commonly used to monitor the frequency changes in a non-stationary signal; the root-mean square (RMS); and the root-median square (RMeS) of the seismic amplitude. We observed distinct changes in the temporal variation in PE, PPE, and IF, which are consistent with the changing state from quiescence to magma propagation and then to eruption. During the eruption, PE and PPE fit the lava discharge rate, showing their potential to forecast the duration of the eruption. While one parameter may be more sensitive to one stage, the other may respond better to another stage. Therefore, combining them may provide more reliable information. Cluster analysis of these combined parameters shows clusters consistent with the expert interpretation, confirming the power of these parameters to distinguish different eruption stages. Article in Journal/Newspaper Iceland University of Potsdam: publish.UP Holuhraun ENVELOPE(-16.831,-16.831,64.852,64.852) Natural Hazards and Earth System Sciences 24 11 4075 4089
spellingShingle ddc:910
Institut für Geowissenschaften
Sudibyo, Maria R. P.
Eibl, Eva P. S. (Prof. Dr.)
Hainzl, Sebastian (Dr.)
Ohrnberger, Matthias (Dr.)
Dynamical changes in seismic properties prior to, during, and after the 2014–2015 Holuhraun eruption, Iceland
title Dynamical changes in seismic properties prior to, during, and after the 2014–2015 Holuhraun eruption, Iceland
title_full Dynamical changes in seismic properties prior to, during, and after the 2014–2015 Holuhraun eruption, Iceland
title_fullStr Dynamical changes in seismic properties prior to, during, and after the 2014–2015 Holuhraun eruption, Iceland
title_full_unstemmed Dynamical changes in seismic properties prior to, during, and after the 2014–2015 Holuhraun eruption, Iceland
title_short Dynamical changes in seismic properties prior to, during, and after the 2014–2015 Holuhraun eruption, Iceland
title_sort dynamical changes in seismic properties prior to, during, and after the 2014–2015 holuhraun eruption, iceland
topic ddc:910
Institut für Geowissenschaften
topic_facet ddc:910
Institut für Geowissenschaften
url https://publishup.uni-potsdam.de/frontdoor/index/index/docId/66795
https://doi.org/10.5194/nhess-24-4075-2024