Deposits from dome-collapse and fountain-collapse pyroclastic flows at Soufrière Hills Volcano, Montserrat
- 1 January 2002
- journal article
- Published by Geological Society of London in Geological Society, London, Memoirs
- Vol. 21 (1) , 231-262
- https://doi.org/10.1144/gsl.mem.2002.021.01.11
Abstract
Pyroclastic flows were formed at Soufrière Hills Volcano by lava-dome collapse and by fountain collapse associated with Vulcanian explosions. Major episodes of dome collapse, lasting tens of minutes to a few hours, followed escalating patterns of progressively larger flows with longer runouts. Block-and-ash flow deposit volumes range from 6 m 3 with runouts of 1-7 km. The flows formed coarse-grained block-and-ash flow deposits, with associated fine-grained pyroclastic surge deposits and ashfall deposits. Small flows commonly formed lobate channelized deposits. Large block-and-ash flows in unconfined areas produced sheet-like deposits with tapering margins. the development of pyroclastic surges was variable depending on topography and dome pore pressure. Pyroclastic surge deposits commonly had a lower layer poor in fine ash that was formed at the current front and an upper layer rich in fine ash. Block-and-ash flows were erosive, producing striated and scoured bedrock surfaces and forming channels, many metres deep, in earlier deposits. Abundant accidental material was incorporated. Pyroclastic flow deposits formed by fountain collapse were pumiceous, with narrow sinuous, lobate morphologies and well developed levees and snouts. Two coastal fans formed where pyroclastic flows entered the sea. Their seaward extent was limited by a submarine slope break.Keywords
This publication has 29 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
- 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
- Petrologic evidence for pre‐eruptive pressure‐temperature conditions, and recent reheating, of andesitic magma erupting at the Soufriere Hills Volcano, Montserrat, W.I.Geophysical Research Letters, 1998
- Pyroclastic flows generated by gravitational instability of the 1996–97 Lava Dome of Soufriere Hills Volcano, MontserratGeophysical Research Letters, 1998
- The 1984 nu e-ardente deposits of Merapi volcano, Central Java, Indonesia: stratigraphy, textural characteristics, and transport mechanismsBulletin of Volcanology, 1993
- 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
- Bedforms, Primary Structures and Grain Fabric in the Presence of Suspended Sediment RainJournal of Sedimentary Research, 1989
- Volcanic Successions Modern and AncientPublished by Springer Nature ,1987