Dispersion modeling of volcanic ash clouds: North Pacific eruptions, the past 40 years: 1970–2010

Over the last 40 years, there have been numerous volcanic eruptions across the North Pacific (NOPAC) region that posed a potential threat to both local communities and transcontinental aircraft. The ability to detect these volcanic clouds using satellite remote sensing and predict their movement by...

Full description

Bibliographic Details
Main Authors: P. Webley, K. Dean, R. Peterson, A. Steffke, M. Harrild, J. Groves
Format: Article in Journal/Newspaper
Language:unknown
Subjects:
Online Access:http://hdl.handle.net/10.1007/s11069-011-0053-9
id ftrepec:oai:RePEc:spr:nathaz:v:61:y:2012:i:2:p:661-671
record_format openpolar
spelling ftrepec:oai:RePEc:spr:nathaz:v:61:y:2012:i:2:p:661-671 2023-05-15T16:29:29+02:00 Dispersion modeling of volcanic ash clouds: North Pacific eruptions, the past 40 years: 1970–2010 P. Webley K. Dean R. Peterson A. Steffke M. Harrild J. Groves http://hdl.handle.net/10.1007/s11069-011-0053-9 unknown http://hdl.handle.net/10.1007/s11069-011-0053-9 article ftrepec 2020-12-04T13:32:03Z Over the last 40 years, there have been numerous volcanic eruptions across the North Pacific (NOPAC) region that posed a potential threat to both local communities and transcontinental aircraft. The ability to detect these volcanic clouds using satellite remote sensing and predict their movement by dispersion modeling is a major component of hazard mitigation. The Puff volcanic ash transport and dispersion model, used by the Alaska Volcano Observatory, was used to illustrate the impact that these volcanic ash clouds have made across the NOPAC and entire Polar region over the past 40 years. Nearly, 400 separate ash clouds were analyzed that were either reported or detected to have reached above 6 km (20,000 ft) above sea level, an average of one ash cloud every 1.25 months. Particular events showed that ash clouds can be tracked from Alaska to Greenland (Crater Peak, Mount Spurr in 1992), from Kamchatka to Alaska (Kluvicheskoi Volcano in 1994), from Alaska to California (Mount Cleveland Volcano in 2001) and from multiple events within 1 day (Mount Augustine Volcano in 2006). This study showed the vast number of events that have impacted this Polar region and how tracking them is useful for hazard mitigation. Copyright Springer Science+Business Media B.V. 2012 Polar regions, Volcanic ash, Dispersion modeling Article in Journal/Newspaper Greenland Kamchatka Alaska RePEc (Research Papers in Economics) Greenland Pacific
institution Open Polar
collection RePEc (Research Papers in Economics)
op_collection_id ftrepec
language unknown
description Over the last 40 years, there have been numerous volcanic eruptions across the North Pacific (NOPAC) region that posed a potential threat to both local communities and transcontinental aircraft. The ability to detect these volcanic clouds using satellite remote sensing and predict their movement by dispersion modeling is a major component of hazard mitigation. The Puff volcanic ash transport and dispersion model, used by the Alaska Volcano Observatory, was used to illustrate the impact that these volcanic ash clouds have made across the NOPAC and entire Polar region over the past 40 years. Nearly, 400 separate ash clouds were analyzed that were either reported or detected to have reached above 6 km (20,000 ft) above sea level, an average of one ash cloud every 1.25 months. Particular events showed that ash clouds can be tracked from Alaska to Greenland (Crater Peak, Mount Spurr in 1992), from Kamchatka to Alaska (Kluvicheskoi Volcano in 1994), from Alaska to California (Mount Cleveland Volcano in 2001) and from multiple events within 1 day (Mount Augustine Volcano in 2006). This study showed the vast number of events that have impacted this Polar region and how tracking them is useful for hazard mitigation. Copyright Springer Science+Business Media B.V. 2012 Polar regions, Volcanic ash, Dispersion modeling
format Article in Journal/Newspaper
author P. Webley
K. Dean
R. Peterson
A. Steffke
M. Harrild
J. Groves
spellingShingle P. Webley
K. Dean
R. Peterson
A. Steffke
M. Harrild
J. Groves
Dispersion modeling of volcanic ash clouds: North Pacific eruptions, the past 40 years: 1970–2010
author_facet P. Webley
K. Dean
R. Peterson
A. Steffke
M. Harrild
J. Groves
author_sort P. Webley
title Dispersion modeling of volcanic ash clouds: North Pacific eruptions, the past 40 years: 1970–2010
title_short Dispersion modeling of volcanic ash clouds: North Pacific eruptions, the past 40 years: 1970–2010
title_full Dispersion modeling of volcanic ash clouds: North Pacific eruptions, the past 40 years: 1970–2010
title_fullStr Dispersion modeling of volcanic ash clouds: North Pacific eruptions, the past 40 years: 1970–2010
title_full_unstemmed Dispersion modeling of volcanic ash clouds: North Pacific eruptions, the past 40 years: 1970–2010
title_sort dispersion modeling of volcanic ash clouds: north pacific eruptions, the past 40 years: 1970–2010
url http://hdl.handle.net/10.1007/s11069-011-0053-9
geographic Greenland
Pacific
geographic_facet Greenland
Pacific
genre Greenland
Kamchatka
Alaska
genre_facet Greenland
Kamchatka
Alaska
op_relation http://hdl.handle.net/10.1007/s11069-011-0053-9
_version_ 1766019189592555520