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  5. Destructiveness of pyroclastic surges controlled by turbulent fluctuations
 
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Destructiveness of pyroclastic surges controlled by turbulent fluctuations

Author(s)
Brosch, Ermanno  
Lube, Gert  
Cerminara, Matteo  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Pisa, Pisa, Italia  
Esposti Ongaro, Tomaso  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Pisa, Pisa, Italia  
Breard, Eric C. P.  
Dufek, Josef  
Sovilla, Betty  
Fullard, Luke  
Language
English
Obiettivo Specifico
5V. Processi eruttivi e post-eruttivi
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Nature Communications  
Issue/vol(year)
/12 (2021)
Publisher
Nature PG
Pages (printed)
7306
Date Issued
2021
DOI
10.1038/s41467-021-27517-9
URI
https://www.earth-prints.org/handle/2122/15126
Subjects
04.08. Volcanology  
Abstract
Pyroclastic surges are lethal hazards from volcanoes that exhibit enormous destructiveness through dynamic pressures of 100–102 kPa inside flows capable of obliterating reinforced buildings. However, to date, there are no measurements inside these currents to quantify the dynamics of this important hazard process. Here we show, through large-scale experiments and the first field measurement of pressure inside pyroclastic surges, that dynamic pressure energy is mostly carried by large-scale coherent turbulent structures and gravity waves. These perpetuate as low-frequency high-pressure pulses downcurrent, form maxima in the flow energy spectra and drive a turbulent energy cascade. The pressure maxima exceed mean values, which are traditionally estimated for hazard assessments, manifold. The fre- quency of the most energetic coherent turbulent structures is bounded by a critical Strouhal number of ~0.3, allowing quantitative predictions. This explains the destructiveness of real- world flows through the development of c. 1–20 successive high-pressure pulses per minute. This discovery, which is also applicable to powder snow avalanches, necessitates a re- evaluation of hazard models that aim to forecast and mitigate volcanic hazard impacts globally.
Type
article
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Brosch_etal_NC_2021.pdf

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10.26 MB

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