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  5. Birth, growth and morphologic evolution of the `Laghetto´ cinder cone during the 2001 Etna eruption
 
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Birth, growth and morphologic evolution of the `Laghetto´ cinder cone during the 2001 Etna eruption

Author(s)
Calvari, S.  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italia  
Pinkerton, H.  
Environmental Science Department, Institute of Environmental and Natural Sciences, Lancaster University, Lancaster LA1 4YQ, UK  
Language
English
Status
Published
Peer review journal
Yes
Journal
Journal of Volcanology and Geothermal Research  
Issue/vol(year)
2-3/132(2004)
Publisher
Elsevier
Pages (printed)
225-239
Date Issued
April 30, 2004
DOI
10.1016/S0377-0273(03)00347-0
URI
https://www.earth-prints.org/handle/2122/433
Subjects
04. Solid Earth::04.08. Volcanology::04.08.03. Magmas  
04. Solid Earth::04.08. Volcanology::04.08.06. Volcano monitoring  
04. Solid Earth::04.08. Volcanology::04.08.07. Instruments and techniques  
Subjects

Etna volcano

cinder cone

volcano instability

thermal images

phreatomagmatic activ...

Abstract
We have undertaken detailed observations of the formation of the `Laghetto´ cinder cone, a new cone that formed during a 2-week period of intense activity in Piano del Lago, on the upper slopes of Mount Etna in summer 2001. We describe the events leading to the formation of a small graben, the formation of pit craters on the base of the graben, the onset of phreatomagmatic activity, a transition to intense Strombolian activity, and a return to phreatomagmatic activity as the eruption came to an end. We discuss the reasons for these transitions, and describe the morphological development of the cone during these events. Arcuate cracks on the southern part of the cone were related to withdrawal of magma at the end of the eruption. Other slope instabilities that developed during the eruption include the formation of small radial grain flows on the outer flanks of the cone and the collapse into the crater of part of the crater rim. Some of the failure planes we observed were first identified using a FLIR TM 695 thermal infrared camera. This is the first time that infrared thermography has been used to detect instability of volcanic structures. Results obtained during this test case demonstrate that thermal cameras are a very useful tool for studies of volcanic instability.
References
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Calvari, S., Groppelli G., Pasquaré G., "Preliminary geological data on the south-western wall of the Valle del Bove, Mount Etna, Sicily", Acta Vulcanol., Volume: 5, (1994), pp. 15-30

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Calvari, S., the scientific staff of I.N.G.V. – Sezione di Catania, 2001. Multidisciplinary approach yields insight into Mt. Etna 2001 eruption. EOS Trans. AGU 82, 653–656.

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Taddeucci, J., Pompilio M., Scarlato P., "Monitoring the explosive activity of the July-August 2001 eruption of Mt. Etna (Italy) by ash characterization", Geophys. Res. Lett., Volume: 29, (2002), pp. 1029-1032

Tibaldi, A., "Morphology of pyroclastic cones and tectonics", J. Geophys. Res., Volume: 100, (1995), pp. 24521-24535
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