Elasticity of mixtures and implications for piezobarometry of mixed-phase inclusions
-
Published:2023-07-11
Issue:4
Volume:35
Page:461-478
-
ISSN:1617-4011
-
Container-title:European Journal of Mineralogy
-
language:en
-
Short-container-title:Eur. J. Mineral.
Author:
Angel Ross J.ORCID, Mazzucchelli Mattia L.ORCID, Musiyachenko Kira A.ORCID, Nestola FabrizioORCID, Alvaro MatteoORCID
Abstract
Abstract. Elastic thermobarometry (or piezobarometry) is the process of determining
the P (pressure) and T (temperature) of entrapment of inclusions from their pressure, stress or strain
measured when their host mineral is at room conditions. The methods and
software used for piezobarometry are currently restricted to inclusions
consisting of single phases. In this contribution we describe the theory of
the elasticity of mixtures of different phases and combine it with the
existing isotropic analysis of the elastic interactions between single-phase
inclusions and their hosts to calculate the inclusion pressures of
mixed-phase inclusions. The analysis shows that the reliability of
calculated entrapment conditions for mixed-phase inclusions, including those
containing fluid plus minerals, depends in a complex way upon the contrasts
between the elastic properties of the host and the phases in the inclusion.
The methods to calculate the entrapment conditions of mixed-phase inclusions
have been incorporated into the EosFit7c program (version 7.6) that is available as
freeware from http://www.rossangel.net.
Funder
H2020 European Research Council
Publisher
Copernicus GmbH
Subject
Pulmonary and Respiratory Medicine,Pediatrics, Perinatology and Child Health
Reference73 articles.
1. Adams, H. G., Cohen, L. H., and Rosenfeld, J. L.: Solid inclusion
piezothermometry I: comparison dilatometry, Am. Mineral., 60,
574–583, 1975. 2. Alifirova, T., Daneu, N., Kohn, K., Griffiths, T., Rečnik, A., and
Habler, G.: Atomic scale structure of garnet-rutile interfaces in
host-inclusion systems, 23rd General Meeting of the International
Mineralogical Association, Lyon, France, 2022. 3. Angel, R. J., Mosenfelder, J. L., and Shaw, C. S. J.: Anomalous compression
and equation of state of coesite, Phys. Earth Planet.
In., 124, 71–79, 2001. 4. Angel, R. J. and Jackson, J. M.: Elasticity and equation of state of
orthoenstatite, MgSiO3, Am. Mineral., 87, 558–561, 2002. 5. Angel, R. J., Gonzalez-Platas, J., and Alvaro, M.: EosFit7c and a Fortran
module (library) for equation of state calculations, Z.
Kristallogr., 229, 405–419, 2014a.
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|