Vesiculation processes in silicic magmas
- 1 January 1998
- journal article
- Published by Geological Society of London in Geological Society, London, Special Publications
- Vol. 145 (1) , 27-50
- https://doi.org/10.1144/gsl.sp.1996.145.01.03
Abstract
The physics of vesiculation, i.e. the process of bubble formation and evolution, controls the manner of volcanic eruptions. Vesiculation may lead to extreme rates of magma expansion and to explosive eruptions or, at the other extreme, to low rates and calm effusion of lava domes and flows. In this paper, we discuss the theory of the different stages of vesiculation and examine the results of relevant experimental studies. The following stages are discussed: (1) The development of supersaturation of volatiles in melts. Supersaturation may develop due to a decrease in equilibrium solubility following changes in ambient pressure or temperature or due to an increase in the magma volatile content (e.g. in response to crystallization of water-free or waterpoor mineral assemblages). (2) Bubble nucleation. The classical theory of homogeneous nucleation and some modern modifications, heterogeneous nucleation with emphasis on the nucleation of water bubbles in rhyolitic melts and the role of specific crystals as heterogeneous sites. (3) Bubble growth. The effect of diffusion, viscosity, surface tension, ambient pressure and inter-bubble separation on the dynamics of growth. (4) Bubble coalescence. The theory of coalescence of static foams. factors that may effect coalescence in expanding foams and shape relaxation following bubble coalescence.Keywords
This publication has 48 references indexed in Scilit:
- The dynamics of bubble formation and growth in magmas: A review and analysisPublished by Elsevier ,2003
- Bubble coalescence in basaltic lava: Its impact on the evolution of bubble populationsPublished by Elsevier ,1998
- Causes and consequences of pressurisation in lava dome eruptionsEarth and Planetary Science Letters, 1997
- Bubble growth in rhyolitic melts: experimental and numerical investigationBulletin of Volcanology, 1996
- Permeability development in vesiculating magmas: implications for fragmentationBulletin of Volcanology, 1996
- Rhyolite magma degassing: an experimental study of melt vesiculationBulletin of Volcanology, 1996
- Reply [to “Comment on ‘Dynamics of diffusive bubble growth in magmas: Isothermal case’ by A. A. Proussevitch, D. L. Sahagian, and A. T. Anderson”]Journal of Geophysical Research, 1994
- Comment on “Dynamics of diffusive bubble growth in magmas: Isothermal case” by A. A. Proussevitch, D. L. Sahagian, and A. T. AndersonJournal of Geophysical Research, 1994
- On the vesicularity of pumiceJournal of Geophysical Research, 1994
- Stability of foams in silicate meltsJournal of Volcanology and Geothermal Research, 1993