Intercomparison of Metop-A SO2 measure- ments during the 2010- 2011 Icelandic eruptions

<div class="page" title="Page 1"><div class="layoutArea"><div class="column"><p><span>The European Space Agency project Satellite Monitoring of Ash and Sulphur Dioxide for the mitigation of Avi­ ation Hazards, was introduced after...

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Published in:Annals of Geophysics
Main Authors: Maria Elissavet Koukouli, Lieven Clarisse, Elisa Carboni, Jeroen van Gent, Claudia Spinetti, Dimitris Balis, Spiros Dimopoulos, Don Grainger, Nicolas Theys, Lucia Tampellini, Claus Zehner
Format: Article
Language:English
Published: Istituto Nazionale di Geofisica e Vulcanologia (INGV) 2015-03-01
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Online Access:http://www.annalsofgeophysics.eu/index.php/annals/article/view/6613
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author Maria Elissavet Koukouli
Lieven Clarisse
Elisa Carboni
Jeroen van Gent
Claudia Spinetti
Dimitris Balis
Spiros Dimopoulos
Don Grainger
Nicolas Theys
Lucia Tampellini
Claus Zehner
author_facet Maria Elissavet Koukouli
Lieven Clarisse
Elisa Carboni
Jeroen van Gent
Claudia Spinetti
Dimitris Balis
Spiros Dimopoulos
Don Grainger
Nicolas Theys
Lucia Tampellini
Claus Zehner
author_sort Maria Elissavet Koukouli
collection DOAJ
container_title Annals of Geophysics
description <div class="page" title="Page 1"><div class="layoutArea"><div class="column"><p><span>The European Space Agency project Satellite Monitoring of Ash and Sulphur Dioxide for the mitigation of Avi­ ation Hazards, was introduced after the eruption of the Icelandic volcano Eyjafjallaj</span><span>ö</span><span>kull in the spring of 2010 to facilitate the development of an optimal End­to­End System for Volcanic Ash Plume Monitoring and Predic­ tion. The Eyjafjallaj</span><span>ö</span><span>kull plume drifted towards Europe and caused major disruptions of European air traffic for several weeks affecting the everyday life of millions of people. The limitations in volcanic plume monitoring and prediction capabilities gave birth to this observational system which is based on comprehensive satellite­derived ash plume and sulphur dioxide [SO</span><span>2</span><span>] level estimates, as well as a widespread validation using supplementary satellite, aircraft and ground­based measurements. Inter­comparison of the volcanic total SO</span><span>2 </span><span>column and plume height observed by GOME­2/Metop­A and IASI/Metop­A are shown before, during and after the Eyjaf­ jallaj</span><span>ö</span><span>kull 2010 eruptions as well as for the 2011 Gr</span><span>í</span><span>msv</span><span>ö</span><span>tn eruption. Co­located ground­based Brewer Spectro­ photometer data extracted from the World Ozone and Ultraviolet Radiation Data Centre for de Bilt, the Nether­ lands, are also compared to the different satellite estimates. Promising agreement is found for the two different types of instrument for the SO</span><span>2 </span><span>columns with linear regression coefficients ranging around from 0.64 when comparing the different instruments and 0.85 when comparing the two different IASI algorithms. The agree­ ment for the plume height is lower, possibly due to the major differences between the height retrieval part of the GOME2 and IASI algorithms. The comparisons with the Brewer ground­based station in de Bilt, The Nether­ lands show good qualitative agreement for the peak of the event however stronger eruptive signals are required for a longer quantitative comparison. </span></p></div></div></div>
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spelling doaj-art-31552af0eb38406e98bcddb61ba41c002025-08-19T20:15:35ZengIstituto Nazionale di Geofisica e Vulcanologia (INGV)Annals of Geophysics1593-52132037-416X2015-03-0157010.4401/ag-66135982Intercomparison of Metop-A SO2 measure- ments during the 2010- 2011 Icelandic eruptionsMaria Elissavet Koukouli0Lieven Clarisse1Elisa Carboni2Jeroen van Gent3Claudia Spinetti4Dimitris Balis5Spiros Dimopoulos6Don Grainger7Nicolas Theys8Lucia Tampellini9Claus Zehner10Laboratory of Atmospheric Physics, Aristotle University of Thessaloniki, ThessalonikiUniversité Libre de Bruxelles, BrusselsCOMET, Atmospheric, Oceanic & Planetary Physics, Oxford University, OxfordBelgian Institute for Space Aeronomy, BrusselsIstituto Nazionale di Geofisica e Vulcanologia, CNT, RomeLaboratory of Atmospheric Physics, Aristotle University of Thessaloniki, ThessalonikiLaboratory of Atmospheric Physics, Aristotle University of Thessaloniki, ThessalonikiCOMET, Atmospheric, Oceanic & Planetary Physics, Oxford University, OxfordBelgian Institute for Space Aeronomy, Brussels, BelgiumCompagnia Generale per lo Spazio, Milano,European Space Agency, Rome<div class="page" title="Page 1"><div class="layoutArea"><div class="column"><p><span>The European Space Agency project Satellite Monitoring of Ash and Sulphur Dioxide for the mitigation of Avi­ ation Hazards, was introduced after the eruption of the Icelandic volcano Eyjafjallaj</span><span>ö</span><span>kull in the spring of 2010 to facilitate the development of an optimal End­to­End System for Volcanic Ash Plume Monitoring and Predic­ tion. The Eyjafjallaj</span><span>ö</span><span>kull plume drifted towards Europe and caused major disruptions of European air traffic for several weeks affecting the everyday life of millions of people. The limitations in volcanic plume monitoring and prediction capabilities gave birth to this observational system which is based on comprehensive satellite­derived ash plume and sulphur dioxide [SO</span><span>2</span><span>] level estimates, as well as a widespread validation using supplementary satellite, aircraft and ground­based measurements. Inter­comparison of the volcanic total SO</span><span>2 </span><span>column and plume height observed by GOME­2/Metop­A and IASI/Metop­A are shown before, during and after the Eyjaf­ jallaj</span><span>ö</span><span>kull 2010 eruptions as well as for the 2011 Gr</span><span>í</span><span>msv</span><span>ö</span><span>tn eruption. Co­located ground­based Brewer Spectro­ photometer data extracted from the World Ozone and Ultraviolet Radiation Data Centre for de Bilt, the Nether­ lands, are also compared to the different satellite estimates. Promising agreement is found for the two different types of instrument for the SO</span><span>2 </span><span>columns with linear regression coefficients ranging around from 0.64 when comparing the different instruments and 0.85 when comparing the two different IASI algorithms. The agree­ ment for the plume height is lower, possibly due to the major differences between the height retrieval part of the GOME2 and IASI algorithms. The comparisons with the Brewer ground­based station in de Bilt, The Nether­ lands show good qualitative agreement for the peak of the event however stronger eruptive signals are required for a longer quantitative comparison. </span></p></div></div></div>http://www.annalsofgeophysics.eu/index.php/annals/article/view/6613Metop-A, Sulphur Dioxide, Volcano, GOME-2, IASI, Brewer
spellingShingle Maria Elissavet Koukouli
Lieven Clarisse
Elisa Carboni
Jeroen van Gent
Claudia Spinetti
Dimitris Balis
Spiros Dimopoulos
Don Grainger
Nicolas Theys
Lucia Tampellini
Claus Zehner
Intercomparison of Metop-A SO2 measure- ments during the 2010- 2011 Icelandic eruptions
Metop-A, Sulphur Dioxide, Volcano, GOME-2, IASI, Brewer
title Intercomparison of Metop-A SO2 measure- ments during the 2010- 2011 Icelandic eruptions
title_full Intercomparison of Metop-A SO2 measure- ments during the 2010- 2011 Icelandic eruptions
title_fullStr Intercomparison of Metop-A SO2 measure- ments during the 2010- 2011 Icelandic eruptions
title_full_unstemmed Intercomparison of Metop-A SO2 measure- ments during the 2010- 2011 Icelandic eruptions
title_short Intercomparison of Metop-A SO2 measure- ments during the 2010- 2011 Icelandic eruptions
title_sort intercomparison of metop a so2 measure ments during the 2010 2011 icelandic eruptions
topic Metop-A, Sulphur Dioxide, Volcano, GOME-2, IASI, Brewer
url http://www.annalsofgeophysics.eu/index.php/annals/article/view/6613
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