Skip to main navigation Skip to search Skip to main content

A general viscosity model of Campi Flegrei (Italy) melts

  • V. Misiti*
  • , F. Vetere
  • , C. Freda
  • , P. Scarlato
  • , H. Behrens
  • , A. Mangiacapra
  • , D. B. Dingwell
  • *Corresponding author for this work
  • Istituto Nazionale Di Geofisica E Vulcanologia
  • Gabriele d'Annunzio University
  • Leibniz University Hannover
  • Ludwig Maximilian University of Munich

Research output: Contribution to journalArticlepeer-review

Abstract

Viscosities of shoshonitic and latitic melts, relevant to the Campi Flegrei caldera magmas, have been experimentally determined at atmospheric pressure and 0.5GPa, temperatures between 840K and 1870K, and H2O contents from 0.02 to 3.30wt.%.The concentric cylinder technique was employed at atmospheric pressure to determine viscosity of nominally anhydrous melts in the viscosity range of 101.5-103Pas. The micropenetration technique was used to determine the viscosity of hydrous and anhydrous melts at atmospheric pressure in the high viscosity range (1010Pas). Falling sphere experiments were performed at 0.5GPa in the low viscosity range (from 100.35 to 102.79Pas) in order to obtain viscosity data of anhydrous and hydrous melts. The combination of data obtained from the three different techniques adopted permits a general description of viscosity as a function of temperature and water content using the following modified VFT equation:logη=-a+bT-c+dT-e·expg·wTwhere η is the viscosity in Pa·s, T the temperature in K, w the H2O content in wt.%, and a, b, c, d, e, and g are the VFT parameters. This model reproduces the experimental data (95 measurements) with a 1σ standard deviation of 0.19 and 0.22 log units for shoshonite and latite, respectively. The proposed model has been applied also to a more evolved composition (trachyte) from the same area in order to create a general model applicable to the whole compositional range of Campi Flegrei products.Moreover, speed data have been used to constrain the ascent velocity of latitic, shoshonitic, and trachytic melts within dikes. Using petrological data and volcanological information (geometrical parameters of the eruptive fissure and depth of magma storage), we estimate a time scale for the ascent of melt from 9. km to 4. km depth (where deep and shallow reservoirs, respectively, are located) in the order of few minutes. Such a rapid ascent should be taken into account for the hazard assessment in the Campi Flegrei area.

Original languageEnglish
Pages (from-to)50-59
Number of pages10
JournalChemical Geology
Volume290
Issue number1-2
DOIs
StatePublished - 7 Nov 2011
Externally publishedYes

Keywords

  • Campi Flegrei
  • Concentric cylinder
  • Falling sphere
  • Latites
  • Micropenetration
  • Shoshonites

Fingerprint

Dive into the research topics of 'A general viscosity model of Campi Flegrei (Italy) melts'. Together they form a unique fingerprint.

Cite this