First recorded eruption of Nabro volcano, Eritrea, 2011

被引:0
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作者
Berhe Goitom
Clive Oppenheimer
James O. S. Hammond
Raphaël Grandin
Talfan Barnie
Amy Donovan
Ghebrebrhan Ogubazghi
Ermias Yohannes
Goitom Kibrom
J- Michael Kendall
Simon A. Carn
David Fee
Christine Sealing
Derek Keir
Atalay Ayele
Jon Blundy
Joanna Hamlyn
Tim Wright
Seife Berhe
机构
[1] University of Bristol,School of Earth Sciences
[2] Eritrea Institute of Technology,Department of Earth Sciences
[3] Downing Place,Department of Geography
[4] Imperial College,Department of Earth Science and Engineering
[5] Sorbonne Paris Cité,Institut de Physique du Globe de Paris
[6] Univ Paris Diderot CNRS,Laboratoire Magmas et Volcans
[7] Université Blaise Pascal,Department of Mines
[8] Eritrea Geological Surveys,Department of Geological and Mining Engineering and Sciences
[9] Michigan Technological University,Wilson Infrasound Observatories, Alaska Volcano Observatory, Geophysical Institute
[10] University of Alaska Fairbanks,National Oceanography Centre Southampton
[11] University of Southampton,Institute of Geophysics, Space Science and Astronomy
[12] Addis Ababa University,COMET, School of Earth and Environment
[13] University of Leeds,undefined
[14] Global Resources Development Consultants,undefined
来源
Bulletin of Volcanology | 2015年 / 77卷
关键词
Nabro; InSAR; Seismicity; Afar; Danakil; Volcano monitoring; Satellite remote sensing;
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学科分类号
摘要
We present a synthesis of diverse observations of the first recorded eruption of Nabro volcano, Eritrea, which began on 12 June 2011. While no monitoring of the volcano was in effect at the time, it has been possible to reconstruct the nature and evolution of the eruption through analysis of regional seismological and infrasound data and satellite remote sensing data, supplemented by petrological analysis of erupted products and brief field surveys. The event is notable for the comparative rarity of recorded historical eruptions in the region and of caldera systems in general, for the prodigious quantity of SO2 emitted into the atmosphere and the significant human impacts that ensued notwithstanding the low population density of the Afar region. It is also relevant in understanding the broader magmatic and tectonic significance of the volcanic massif of which Nabro forms a part and which strikes obliquely to the principal rifting directions in the Red Sea and northern Afar. The whole-rock compositions of the erupted lavas and tephra range from trachybasaltic to trachybasaltic andesite, and crystal-hosted melt inclusions contain up to 3,000 ppm of sulphur by weight. The eruption was preceded by significant seismicity, detected by regional networks of sensors and accompanied by sustained tremor. Substantial infrasound was recorded at distances of hundreds to thousands of kilometres from the vent, beginning at the onset of the eruption and continuing for weeks. Analysis of ground deformation suggests the eruption was fed by a shallow, NW–SE-trending dike, which is consistent with field and satellite observations of vent distributions. Despite lack of prior planning and preparedness for volcanic events in the country, rapid coordination of the emergency response mitigated the human costs of the eruption.
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