Pyroclastic flows and surges generated by the 25 June 1997 dome collapse, Soufrière Hills Volcano, Montserrat
- 1 January 2002
- journal article
- Published by Geological Society of London in Geological Society, London, Memoirs
- Vol. 21 (1) , 191-209
- https://doi.org/10.1144/gsl.mem.2002.021.01.09
Abstract
On 25 June 1997, an unsteady, retrogressive, partial collapse of the lava dome at Soufrière Hills Volcano lasted 25 minutes and generated a major pulsatory block-and-ash flow, associated pyroclastic surges and a surge-derived pyroclastic flow that inundated an area of 4 km2 on the north and NE flanks of the volcano. Three main pulses are estimated to have involved 0.78, 2.36 and 2.36 × 106m3 of debris and the average velocities of the fronts of the related block-and-ash flow pulses were calculated to be 15 m s−1, 16.1 m s−1 and 21.9 m s−1 respectively. Deposits of block-and-ash flow pulses 1 and 2 partially filled the main drainage channel so that material of the third pulse spilled out of the channel at several places, inundating villages on the eastern coastal plain. Bends and constrictions in the main drainage channel, together with depositional filling of the channel, assisted detachment of pyroclastic surges from the pulsatory block-and-ash flow. The most extensive pyroclastic surge detached at an early stage from the third block-and-ash flow pulse, swept down the north flank of the volcano and then climbed 70 m in elevation before dissipating. Rapid sedimentation from this surge generated a high-concentration granular flow (surge-derived pyroclastic flow) that drained westwards into a valley not anticipated to be at high risk. Observations support the hypothesis that the interior of the Soufrière Hills Volcano lava dome was pressurized and that pyroclastic surge development became more substantial as deeper, more highly pressurized parts of the dome were incorporated into the pyroclastic flow. Surge development was at times so violent that expanded clouds detached from the block-and-ash flow within a few tens of metres of the lava dome.Keywords
This publication has 27 references indexed in Scilit:
- The 1902 Peléean deposits in the Fort Cemetery of St. Pierre, Martinique: a model for the accumulation of turbulent nuées ardentesPublished by Elsevier ,2003
- The Montserrat Volcano Observatory: its evolution, organization, role and activitiesGeological Society, London, Memoirs, 2002
- Pyroclastic current dynamic pressure from aerodynamics of tree or pole blow-downJournal of Volcanology and Geothermal Research, 2000
- Nuées ardentes of 22 November 1994 at Merapi volcano, Java, IndonesiaJournal of Volcanology and Geothermal Research, 2000
- Mobility of pyroclastic flows and surges at the Soufriere Hills Volcano, MontserratGeophysical Research Letters, 1999
- Pyroclastic flows generated by gravitational instability of the 1996–97 Lava Dome of Soufriere Hills Volcano, MontserratGeophysical Research Letters, 1998
- Deposits of the 30 March 1956 directed blast at Bezymianny volcano, Kamchatka, RussiaBulletin of Volcanology, 1996
- The 1984 nu e-ardente deposits of Merapi volcano, Central Java, Indonesia: stratigraphy, textural characteristics, and transport mechanismsBulletin of Volcanology, 1993
- Emplacement of the 18 May 1980 lateral blast deposit ENE of Mount St. Helens, WashingtonBulletin of Volcanology, 1992
- Characteristics of pyroclastic deposits at the margin of Fond Canonville, Martinique, and implications for the transport of the 1902 nuées ardentes of Mt. PeléeJournal of Volcanology and Geothermal Research, 1989