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  5. Anatomy of a fumarolic system inferred from a multiphysics approach
 
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Anatomy of a fumarolic system inferred from a multiphysics approach

Author(s)
Gresse, Marceau  
Vandemeulebrouck, Jean  
Byrdina, Svetlana  
Chiodini, Giovanni  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Bologna, Bologna, Italia  
Roux, Philippe  
Rinaldi, Antonio Pio  
Wathelet, Marc  
Ricci, Tullio  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia  
Letort, Jean  
Petrillo, Zaccaria  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OV, Napoli, Italia  
Tuccimei, Paola  
Lucchetti, Carlo  
Sciarra, Alessandra  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia  
Language
English
Obiettivo Specifico
6V. Pericolosità vulcanica e contributi alla stima del rischio
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Scientific reports  
Issue/vol(year)
/ 8 (2018)
Electronic ISSN
2045-2322
Pages (printed)
id 7580
Date Issued
May 15, 2018
DOI
10.1038/s41598-018-25448-y
URI
https://www.earth-prints.org/handle/2122/12169
Abstract
Fumaroles are a common manifestation of volcanic activity that are associated with large emissions of gases into the atmosphere. These gases originate from the magma, and they can provide indirect and unique insights into magmatic processes. Therefore, they are extensively used to monitor and forecast eruptive activity. During their ascent, the magmatic gases interact with the rock and hydrothermal fluids, which modify their geochemical compositions. These interactions can complicate our understanding of the real volcanic dynamics and remain poorly considered. Here, we present the first complete imagery of a fumarolic plumbing system using three-dimensional electrical resistivity tomography and new acoustic noise localization. We delineate a gas reservoir that feeds the fumaroles through distinct channels. Based on this geometry, a thermodynamic model reveals that near-surface mixing between gas and condensed steam explains the distinct geochemical compositions of fumaroles that originate from the same source. Such modeling of fluid interactions will allow for the simulation of dynamic processes of magmatic degassing, which is crucial to the monitoring of volcanic unrest.
Type
article
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Anatomy of a fumarolic system inferred from a multiphysics approach.pdf

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1.98 MB

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Checksum (MD5)

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rome library|catania library|milano library|napoli library|pisa library|palermo library
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⚬Paolo Marco De Martini

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