Rifted margin architecture and crustal rheology: Reviewing Iberia-Newfoundland, Central South Atlantic, and South China Sea

© 2016 Elsevier Ltd Crustal rheology controls the style of rifting and ultimately the architecture of rifted margins. Here we review the formation of three magma-poor margin pairs, Iberia-Newfoundland, the central segment of the South Atlantic Rift, and the South China Sea by integrating observatio...

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Published in:Marine and Petroleum Geology
Main Authors: Brune, Sascha, Heine, Christian, Clift, Peter D., Pérez-Gussinyé, Marta
Format: Text
Language:unknown
Published: LSU Scholarly Repository 2017
Subjects:
Online Access:https://repository.lsu.edu/geo_pubs/353
https://doi.org/10.1016/j.marpetgeo.2016.10.018
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spelling ftlouisianastuir:oai:repository.lsu.edu:geo_pubs-1352 2024-09-09T19:53:31+00:00 Rifted margin architecture and crustal rheology: Reviewing Iberia-Newfoundland, Central South Atlantic, and South China Sea Brune, Sascha Heine, Christian Clift, Peter D. Pérez-Gussinyé, Marta 2017-01-01T08:00:00Z https://repository.lsu.edu/geo_pubs/353 https://doi.org/10.1016/j.marpetgeo.2016.10.018 unknown LSU Scholarly Repository https://repository.lsu.edu/geo_pubs/353 doi:10.1016/j.marpetgeo.2016.10.018 Faculty Publications Iberia-Newfounland Magma-poor margins South Atlantic South China Sea text 2017 ftlouisianastuir https://doi.org/10.1016/j.marpetgeo.2016.10.018 2024-08-08T04:27:15Z © 2016 Elsevier Ltd Crustal rheology controls the style of rifting and ultimately the architecture of rifted margins. Here we review the formation of three magma-poor margin pairs, Iberia-Newfoundland, the central segment of the South Atlantic Rift, and the South China Sea by integrating observational data into a numerical forward modelling framework. We utilise a 2D version of the finite element code SLIM3D, which includes nonlinear temperature- and stress-dependent elasto-visco-plastic rheology and is able to reproduce a wide range of rift-related deformation processes such as flexure, lower crustal flow, and faulting. Extension in cold, strong, or thin crust is accommodated by brittle faults and ductile shear zones that facilitate narrow rifts with asymmetric fault geometries. Hot, weak, or thick continental crust is dominated by ductile deformation and often extends symmetrically into a wide rift system. This simple recipe provides the standard framework to understand initial rift geometry, however, it is insufficient to account for the dynamics of intermediate and late rift stages that shape the final margin architecture. Asymmetric conjugate margins where one side is wide and the other narrow can be formed via both wide and narrow rift styles, which we reproduce with weak and strong crustal rheologies, respectively. Exemplified by the Iberia-Newfoundland conjugates and the Central South Atlantic, we define three characteristic rift phases: an initial phase of simultaneous faulting, an intermediate phase of rift migration that involves sequential fault activity, and finally, the breakup phase. Crustal rheology plays an overarching role in governing the dynamics of these asymmetric margins: we illustrate that weak rheologies generally prolong the phase of simultaneous faulting, while rift migration is enabled by initial fault asymmetry as well as relatively weak crust. Formation of the predominantly symmetric and wide margins of the South China Sea was controlled by extraordinarily weak crust that extended ... Text Newfoundland LSU Digital Commons (Louisiana State University) Marine and Petroleum Geology 79 257 281
institution Open Polar
collection LSU Digital Commons (Louisiana State University)
op_collection_id ftlouisianastuir
language unknown
topic Iberia-Newfounland
Magma-poor margins
South Atlantic
South China Sea
spellingShingle Iberia-Newfounland
Magma-poor margins
South Atlantic
South China Sea
Brune, Sascha
Heine, Christian
Clift, Peter D.
Pérez-Gussinyé, Marta
Rifted margin architecture and crustal rheology: Reviewing Iberia-Newfoundland, Central South Atlantic, and South China Sea
topic_facet Iberia-Newfounland
Magma-poor margins
South Atlantic
South China Sea
description © 2016 Elsevier Ltd Crustal rheology controls the style of rifting and ultimately the architecture of rifted margins. Here we review the formation of three magma-poor margin pairs, Iberia-Newfoundland, the central segment of the South Atlantic Rift, and the South China Sea by integrating observational data into a numerical forward modelling framework. We utilise a 2D version of the finite element code SLIM3D, which includes nonlinear temperature- and stress-dependent elasto-visco-plastic rheology and is able to reproduce a wide range of rift-related deformation processes such as flexure, lower crustal flow, and faulting. Extension in cold, strong, or thin crust is accommodated by brittle faults and ductile shear zones that facilitate narrow rifts with asymmetric fault geometries. Hot, weak, or thick continental crust is dominated by ductile deformation and often extends symmetrically into a wide rift system. This simple recipe provides the standard framework to understand initial rift geometry, however, it is insufficient to account for the dynamics of intermediate and late rift stages that shape the final margin architecture. Asymmetric conjugate margins where one side is wide and the other narrow can be formed via both wide and narrow rift styles, which we reproduce with weak and strong crustal rheologies, respectively. Exemplified by the Iberia-Newfoundland conjugates and the Central South Atlantic, we define three characteristic rift phases: an initial phase of simultaneous faulting, an intermediate phase of rift migration that involves sequential fault activity, and finally, the breakup phase. Crustal rheology plays an overarching role in governing the dynamics of these asymmetric margins: we illustrate that weak rheologies generally prolong the phase of simultaneous faulting, while rift migration is enabled by initial fault asymmetry as well as relatively weak crust. Formation of the predominantly symmetric and wide margins of the South China Sea was controlled by extraordinarily weak crust that extended ...
format Text
author Brune, Sascha
Heine, Christian
Clift, Peter D.
Pérez-Gussinyé, Marta
author_facet Brune, Sascha
Heine, Christian
Clift, Peter D.
Pérez-Gussinyé, Marta
author_sort Brune, Sascha
title Rifted margin architecture and crustal rheology: Reviewing Iberia-Newfoundland, Central South Atlantic, and South China Sea
title_short Rifted margin architecture and crustal rheology: Reviewing Iberia-Newfoundland, Central South Atlantic, and South China Sea
title_full Rifted margin architecture and crustal rheology: Reviewing Iberia-Newfoundland, Central South Atlantic, and South China Sea
title_fullStr Rifted margin architecture and crustal rheology: Reviewing Iberia-Newfoundland, Central South Atlantic, and South China Sea
title_full_unstemmed Rifted margin architecture and crustal rheology: Reviewing Iberia-Newfoundland, Central South Atlantic, and South China Sea
title_sort rifted margin architecture and crustal rheology: reviewing iberia-newfoundland, central south atlantic, and south china sea
publisher LSU Scholarly Repository
publishDate 2017
url https://repository.lsu.edu/geo_pubs/353
https://doi.org/10.1016/j.marpetgeo.2016.10.018
genre Newfoundland
genre_facet Newfoundland
op_source Faculty Publications
op_relation https://repository.lsu.edu/geo_pubs/353
doi:10.1016/j.marpetgeo.2016.10.018
op_doi https://doi.org/10.1016/j.marpetgeo.2016.10.018
container_title Marine and Petroleum Geology
container_volume 79
container_start_page 257
op_container_end_page 281
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