Lateral magma flow in mafic sill complexes
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Published version
Accepted version
Author(s)
Type
Journal Article
Abstract
The structure of upper crustal magma plumbing systems controls the distribution of volcanism and influences tectonic processes. However, delineating the structure and volume of plumbing systems is difficult because (1) active intrusion networks cannot be directly accessed; (2) field outcrops are commonly limited; and (3) geophysical data imaging the subsurface are restricted in areal extent and resolution. This has led to models involving the vertical transfer of magma via dikes, extending from a melt source to overlying reservoirs and eruption sites, being favored in the volcanic literature. However, while there is a wealth of evidence to support the occurrence of dike-dominated systems, we synthesize field- and seismic reflection–based observations and highlight that extensive lateral magma transport (as much as 4100 km) may occur within mafic sill complexes. Most of these mafic sill complexes occur in sedimentary basins (e.g., the Karoo Basin, South Africa), although some intrude crystalline continental crust (e.g., the Yilgarn craton, Australia), and consist of interconnected sills and inclined sheets. Sill complex emplacement is largely controlled by host-rock lithology and structure and the state of stress. We argue that plumbing systems need not be dominated by dikes and that magma can be transported within widespread sill complexes, promoting the development of volcanoes that do not overlie the melt source. However, the extent to which active volcanic systems and rifted margins are underlain by sill complexes remains poorly constrained, despite important implications for elucidating magmatic processes, melt volumes, and melt sources.
Date Issued
2016-04-28
Date Acceptance
2016-03-03
Citation
Geosphere, 2016, 12 (3), pp.809-841
ISSN
1553-040X
Publisher
Geological Society of America
Start Page
809
End Page
841
Journal / Book Title
Geosphere
Volume
12
Issue
3
Copyright Statement
© 2016 Geological Society of America. Gold Open Access articles will be published under the terms of the CC-BY 3.0 license
Sponsor
The Leverhulme Trust
Grant Number
RPG-2013-332
Subjects
Science & Technology
Physical Sciences
Geosciences, Multidisciplinary
Geology
LARGE IGNEOUS PROVINCE
SAUCER-SHAPED SILLS
MAIN ETHIOPIAN RIFT
CONE-SHEET SWARM
LONG-DISTANCE TRANSPORT
FAROE-SHETLAND BASIN
NE ATLANTIC MARGIN
TORRES-DEL-PAINE
SOUTH CHINA SEA
MAGNETIC-SUSCEPTIBILITY
Geochemistry & Geophysics
0402 Geochemistry
0403 Geology
0404 Geophysics
Publication Status
Published