HR: 15:10h
AN: V13H-07 [Abstracts]
TI: 3D crystal packing variation through a rythmic layer in the Dais Intrusion, Dry Valleys Antarctica:
Initial insights through 3D micro CT analysis.
AU: * Jerram, D A
EM: d.a.jerram@dur.ac.uk
AF: Dept. of Earth Sciences, University of Durham, Durham, DH1 3LE
United Kingdom
AU: Mock, A
EM:
AF: Dept. of Earth Sciences, University of Durham, Durham, DH1 3LE
United Kingdom
AU: Davidson, J
EM:
AF: Dept. of Earth Sciences, University of Durham, Durham, DH1 3LE
United Kingdom
AU: Petford, N
EM:
AF: Kingston University, Penrhyn Road, Kingston-upon-Thames, KT1 2EE
United Kingdom
AU: Marsh, B
EM:
AF: Johns Hopkins University, 34th & Charles Streets, Baltimore, MD 21218
AB:
Crystal populations provide a solid cornerstone of information to help understand magmatic processes and timescales. However,
intruding magmas are often laced with varying amounts of existing crystals upon emplacement constraining newly developing
crystal populations. High modal abundance of pre- existing crystals may change magma flow dynamics and modify the
crystallising sequence on a local scale by dynamically changing the relative abundance of solid phases. In the late stages of
intrusion of the basal Sill in the Dry Valleys of Antarctica (c180 Ma), a large layered intrusion developed called the Dais.
This was formed when magma laced with OPX crystals invaded the lowermost parts of the magma plumbing system and spread out
to deveolop an OPX rich zone known as the OPX Tongue. As the OPX rich magma invaded the basal sill, rhythmic layering
developed on a variety of scales from cm to meter. In this study, we have investigated on a cm scale a boundary between an
OPX rich and an OPX poor layer. 3D micro CT analysis of this boundary zone allows the characterisation of the 3D packing
arrangement and size distribution of the crystals. The layers are characterised by varying modal abundances of plagioclase
and OPX/CPX. The analysis shows that a touching framework of OPX + CPX crystals exists throughout the layer studied over a
25% modal variation from 70-45% pyroxene crystals. The relative abundance of CPX increases into the plagioclase rich zone
and its acicular skeletal morphology suggests that it was able to grow more freely into the plagioclase rich melt as the
layers developed. Such variations in packing will be used to calculate emplacement and flow dynamics on a cm scale and
highlight the importance of the pyroxene crystal framework for the evolution of this layered intrusion.
UR: http://www.dur.ac.uk/d.a.jerram/
DE: 3625 Petrography, microstructures, and textures
DE: 3640 Igneous petrology
DE: 3643 Layered magma chambers
SC: Volcanology, Geochemistry, Petrology [V]
MN: Fall Meeting 2005