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Rheological changes in melts and magmas induced by crystallization and strain rate

Authors :
Vetere, Francesco
Iezzi, Gianluca
Perugini, Diego
Holtz, Francois
Source :
Comptes Rendus. Géoscience, Vol 354, Iss S1, Pp 227-248 (2022)
Publication Year :
2022
Publisher :
Académie des sciences, 2022.

Abstract

This review highlights the rheological and phase proportions variation induced by cooling events from superliquidus temperature (melt) to subliquidus temperatures. It provides a comprehensive view of the rheological response of magmatic systems undergoing dynamic cooling and shear deformation. The two main parameters which are of importance to model the rheological properties of such crystallizing systems and which are simultaneously poorly investigated so far are crystallization and strain rates. The response to relatively high deformation rates results in shear thinning behavior in partly crystallized systems under variable shear rate and it should be considered in magmatic processes. Due to the sluggish crystallization of SiO$_{2}$-rich melts, data are mainly available for mafic systems, which does not allow a general reappraisal. An attempt to model available literature data for less evolved systems in dynamic scenarios and a comparison with MELTS algorithm approach (thermodynamic equilibrium conditions) is provided. Since there are difficulties in comparing experimental data gained using different methodologies, we focus mainly on data obtained with the concentric cylinder technique. This highlights the fact that a general experimental protocol is needed in order to compare and model viscosity data to predict the dynamic rheological evolution for volcanic rocks.

Details

Language :
English, French
ISSN :
17787025
Volume :
354
Issue :
S1
Database :
Directory of Open Access Journals
Journal :
Comptes Rendus. GĂ©oscience
Publication Type :
Academic Journal
Accession number :
edsdoj.6323687441664119ac35bb5ff11ebd26
Document Type :
article
Full Text :
https://doi.org/10.5802/crgeos.125