date: 2019-06-13T13:19:55Z pdf:PDFVersion: 1.5 pdf:docinfo:title: Deformations and Morphology Changes Associated with the 2016?2017 Eruption Sequence at Bezymianny Volcano, Kamchatka xmp:CreatorTool: LaTeX with hyperref package access_permission:can_print_degraded: true subject: Lava domes grow by extrusions and intrusions of viscous magma often initiating from a central volcanic vent, and they are frequently defining the source region of hazardous explosive eruptions and pyroclastic density currents. Thus, close monitoring of dome building processes is crucial, but often limited to low data resolution, hazardous access, and poor visibility. Here, we investigated the 2016?2017 eruptive sequence of the dome building Bezymianny volcano, Kamchatka, with spot-mode TerraSAR-X acquisitions, and complement the analysis with webcam imagery and seismic data. Our results reveal clear morphometric changes preceding eruptions that are associated with intrusions and extrusions. Pixel offset measurements show >7 months of precursory plug extrusion, being locally defined and exceeding 30 m of deformation, chiefly without detected seismicity. After a short explosion, three months of lava dome evolution were characterised by extrusions and intrusion. Our data suggest that the growth mechanisms were significantly governed by magma supply rate and shallow upper conduit solidification that deflected magmatic intrusions into the uppermost parts of the dome. The integrated approach contributes significantly to a better understanding of precursory activity and complex growth interactions at dome building volcanoes, and shows that intrusive and extrusive growth is acting in chorus at Bezymianny volcano. dc:format: application/pdf; version=1.5 pdf:docinfo:creator_tool: LaTeX with hyperref package access_permission:fill_in_form: true pdf:encrypted: false dc:title: Deformations and Morphology Changes Associated with the 2016?2017 Eruption Sequence at Bezymianny Volcano, Kamchatka modified: 2019-06-13T13:19:55Z cp:subject: Lava domes grow by extrusions and intrusions of viscous magma often initiating from a central volcanic vent, and they are frequently defining the source region of hazardous explosive eruptions and pyroclastic density currents. Thus, close monitoring of dome building processes is crucial, but often limited to low data resolution, hazardous access, and poor visibility. Here, we investigated the 2016?2017 eruptive sequence of the dome building Bezymianny volcano, Kamchatka, with spot-mode TerraSAR-X acquisitions, and complement the analysis with webcam imagery and seismic data. Our results reveal clear morphometric changes preceding eruptions that are associated with intrusions and extrusions. Pixel offset measurements show >7 months of precursory plug extrusion, being locally defined and exceeding 30 m of deformation, chiefly without detected seismicity. After a short explosion, three months of lava dome evolution were characterised by extrusions and intrusion. Our data suggest that the growth mechanisms were significantly governed by magma supply rate and shallow upper conduit solidification that deflected magmatic intrusions into the uppermost parts of the dome. The integrated approach contributes significantly to a better understanding of precursory activity and complex growth interactions at dome building volcanoes, and shows that intrusive and extrusive growth is acting in chorus at Bezymianny volcano. pdf:docinfo:subject: Lava domes grow by extrusions and intrusions of viscous magma often initiating from a central volcanic vent, and they are frequently defining the source region of hazardous explosive eruptions and pyroclastic density currents. Thus, close monitoring of dome building processes is crucial, but often limited to low data resolution, hazardous access, and poor visibility. Here, we investigated the 2016?2017 eruptive sequence of the dome building Bezymianny volcano, Kamchatka, with spot-mode TerraSAR-X acquisitions, and complement the analysis with webcam imagery and seismic data. Our results reveal clear morphometric changes preceding eruptions that are associated with intrusions and extrusions. Pixel offset measurements show >7 months of precursory plug extrusion, being locally defined and exceeding 30 m of deformation, chiefly without detected seismicity. After a short explosion, three months of lava dome evolution were characterised by extrusions and intrusion. Our data suggest that the growth mechanisms were significantly governed by magma supply rate and shallow upper conduit solidification that deflected magmatic intrusions into the uppermost parts of the dome. The integrated approach contributes significantly to a better understanding of precursory activity and complex growth interactions at dome building volcanoes, and shows that intrusive and extrusive growth is acting in chorus at Bezymianny volcano. pdf:docinfo:creator: René Mania, Thomas R. Walter, Marina Belousova, Alexander Belousov and Sergey L. Senyukov PTEX.Fullbanner: This is pdfTeX, Version 3.14159265-2.6-1.40.17 (TeX Live 2016/W32TeX) kpathsea version 6.2.2 meta:author: René Mania, Thomas R. Walter, Marina Belousova, Alexander Belousov and Sergey L. Senyukov trapped: False meta:creation-date: 2019-05-29T10:28:04Z created: Wed May 29 12:28:04 CEST 2019 access_permission:extract_for_accessibility: true Creation-Date: 2019-05-29T10:28:04Z Author: René Mania, Thomas R. Walter, Marina Belousova, Alexander Belousov and Sergey L. Senyukov producer: pdfTeX-1.40.17 pdf:docinfo:producer: pdfTeX-1.40.17 dc:description: Lava domes grow by extrusions and intrusions of viscous magma often initiating from a central volcanic vent, and they are frequently defining the source region of hazardous explosive eruptions and pyroclastic density currents. Thus, close monitoring of dome building processes is crucial, but often limited to low data resolution, hazardous access, and poor visibility. Here, we investigated the 2016?2017 eruptive sequence of the dome building Bezymianny volcano, Kamchatka, with spot-mode TerraSAR-X acquisitions, and complement the analysis with webcam imagery and seismic data. Our results reveal clear morphometric changes preceding eruptions that are associated with intrusions and extrusions. Pixel offset measurements show >7 months of precursory plug extrusion, being locally defined and exceeding 30 m of deformation, chiefly without detected seismicity. After a short explosion, three months of lava dome evolution were characterised by extrusions and intrusion. Our data suggest that the growth mechanisms were significantly governed by magma supply rate and shallow upper conduit solidification that deflected magmatic intrusions into the uppermost parts of the dome. The integrated approach contributes significantly to a better understanding of precursory activity and complex growth interactions at dome building volcanoes, and shows that intrusive and extrusive growth is acting in chorus at Bezymianny volcano. Keywords: Bezymianny; volcano deformation; monitoring; lava dome; inflation; SAR imaging; radar pixel offsets access_permission:modify_annotations: true dc:creator: René Mania, Thomas R. Walter, Marina Belousova, Alexander Belousov and Sergey L. Senyukov description: Lava domes grow by extrusions and intrusions of viscous magma often initiating from a central volcanic vent, and they are frequently defining the source region of hazardous explosive eruptions and pyroclastic density currents. Thus, close monitoring of dome building processes is crucial, but often limited to low data resolution, hazardous access, and poor visibility. Here, we investigated the 2016?2017 eruptive sequence of the dome building Bezymianny volcano, Kamchatka, with spot-mode TerraSAR-X acquisitions, and complement the analysis with webcam imagery and seismic data. Our results reveal clear morphometric changes preceding eruptions that are associated with intrusions and extrusions. Pixel offset measurements show >7 months of precursory plug extrusion, being locally defined and exceeding 30 m of deformation, chiefly without detected seismicity. After a short explosion, three months of lava dome evolution were characterised by extrusions and intrusion. Our data suggest that the growth mechanisms were significantly governed by magma supply rate and shallow upper conduit solidification that deflected magmatic intrusions into the uppermost parts of the dome. The integrated approach contributes significantly to a better understanding of precursory activity and complex growth interactions at dome building volcanoes, and shows that intrusive and extrusive growth is acting in chorus at Bezymianny volcano. dcterms:created: 2019-05-29T10:28:04Z Last-Modified: 2019-06-13T13:19:55Z dcterms:modified: 2019-06-13T13:19:55Z title: Deformations and Morphology Changes Associated with the 2016?2017 Eruption Sequence at Bezymianny Volcano, Kamchatka xmpMM:DocumentID: uuid:f2759cae-1b2b-42cd-a096-1e68660ba3ba Last-Save-Date: 2019-06-13T13:19:55Z pdf:docinfo:keywords: Bezymianny; volcano deformation; monitoring; lava dome; inflation; SAR imaging; radar pixel offsets pdf:docinfo:modified: 2019-06-13T13:19:55Z meta:save-date: 2019-06-13T13:19:55Z pdf:docinfo:custom:PTEX.Fullbanner: This is pdfTeX, Version 3.14159265-2.6-1.40.17 (TeX Live 2016/W32TeX) kpathsea version 6.2.2 Content-Type: application/pdf X-Parsed-By: org.apache.tika.parser.DefaultParser creator: René Mania, Thomas R. Walter, Marina Belousova, Alexander Belousov and Sergey L. Senyukov dc:subject: Bezymianny; volcano deformation; monitoring; lava dome; inflation; SAR imaging; radar pixel offsets access_permission:assemble_document: true xmpTPg:NPages: 23 access_permission:extract_content: true access_permission:can_print: true pdf:docinfo:trapped: False meta:keyword: Bezymianny; volcano deformation; monitoring; lava dome; inflation; SAR imaging; radar pixel offsets access_permission:can_modify: true pdf:docinfo:created: 2019-05-29T10:28:04Z