Literature DB >> 23072805

A four-dimensional X-ray tomographic microscopy study of bubble growth in basaltic foam.

Don R Baker1, Francesco Brun, Cedrick O'Shaughnessy, Lucia Mancini, Julie L Fife, Mark Rivers.   

Abstract

Understanding the influence of bubble foams on magma permeability and strength is critical to investigations of volcanic eruption mechanisms. Increasing foam porosity decreases strength, enhancing the probability of an eruption. However, higher porosities lead to larger permeabilities, which can lessen the eruption hazard. Here we measure bubble size and wall thickness distributions, as well as connectivity, and calculate permeabilities and tensile strengths of basaltic foams imaged by synchrotron X-ray tomographic microscopy during bubble growth in hydrated basaltic melts. Rapid vesiculation produces porous foams whose fragmentation thresholds are only 5-6 MPa and whose permeabilities increase from approximately 1×10(-10) to 1×10(-9) m(2) between 10 and 14 s despite decreasing connectivity between bubbles. These results indicate that basaltic magmas are most susceptible to failure immediately upon vesiculation and at later times, perhaps only 10's of seconds later, permeability increases may lessen the hazard of explosive, basaltic, Plinian eruptions.

Entities:  

Year:  2012        PMID: 23072805     DOI: 10.1038/ncomms2134

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


  4 in total

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Journal:  J Synchrotron Radiat       Date:  2012-03-16       Impact factor: 2.616

  4 in total
  7 in total

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5.  Advancement of magma fragmentation by inhomogeneous bubble distribution.

Authors:  M Kameda; M Ichihara; S Maruyama; N Kurokawa; Y Aoki; S Okumura; K Uesugi
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7.  In situ observation of the percolation threshold in multiphase magma analogues.

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  7 in total

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