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Experimental evidence links volcanic particle characteristics to pyroclastic flow hazard

  • Pierfrancesco Dellino
  • , Ralf Büttner
  • , Fabio Dioguardi
  • , Domenico M. Doronzo
  • , Luigi La Volpe
  • , Daniela Mele
  • , Ingo Sonder
  • , Roberto Sulpizio
  • , Bernd Zimanowski
  • University of Bari
  • University of Würzburg

Research output: Contribution to journalArticlepeer-review

54 Scopus citations

Abstract

Pyroclastic flows represent the most hazardous events of explosive volcanism, one striking example being the famous historical eruption of Vesuvius that destroyed Pompeii (AD 79). Much of our knowledge of the mechanics of pyroclastic flows comes from theoretical models and numerical simulations. Valuable data are also stored in the geological record of past eruptions, including the particles contained in pyroclastic deposits, but the deposit characteristics are rarely used for quantifying the destructive potential of pyroclastic flows. By means of experiments, we validate a model that is based on data from pyroclastic deposits. The model allows the reconstruction of the current's fluid-dynamic behaviour. Model results are consistent with measured values of dynamic pressure in the experiments, and allow the quantification of the damage potential of pyroclastic flows.

Original languageEnglish
Pages (from-to)314-320
Number of pages7
JournalEarth and Planetary Science Letters
Volume295
Issue number1-2
DOIs
StatePublished - Jun 2010

Keywords

  • Experimental volcanology
  • Pyroclastic flows
  • Pyroclastic particles
  • Volcanic hazard

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