Reconstructing the Late Palaeozoic – Mesozoic topographic evolution of the Chinese Tian Shan: available data and remaining uncertainties

The topographic evolution of continents and especially the growth and dismembering of mountain ranges plays a major role in the tectonic evolution of orogenic systems, as well as in regional or global climate changes. A large number of studies have concentrated on the description, quantification and...

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Main Authors: M. Jolivet, G. Heilbronn, C. Robin, L. Barrier, S. Bourquin, Zh. Guo, Y. Jia, L. Guerit, W. Yang, B. Fu
Format: Article
Language:English
Published: Copernicus Publications 2013-12-01
Series:Advances in Geosciences
Online Access:http://www.adv-geosci.net/37/7/2013/adgeo-37-7-2013.pdf
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spelling doaj-6779d74b39de48df858cf80f17bae5232020-11-24T21:04:10ZengCopernicus PublicationsAdvances in Geosciences1680-73401680-73592013-12-013771810.5194/adgeo-37-7-2013Reconstructing the Late Palaeozoic – Mesozoic topographic evolution of the Chinese Tian Shan: available data and remaining uncertaintiesM. Jolivet0G. Heilbronn1C. Robin2L. Barrier3S. Bourquin4Zh. Guo5Y. Jia6L. Guerit7W. Yang8B. Fu9Géosciences Rennes, CNRS – Univ. Rennes 1 – Observatoire des Sciences de L'Univers de Rennes (OSUR), Rennes, FranceGéosciences Rennes, CNRS – Univ. Rennes 1 – Observatoire des Sciences de L'Univers de Rennes (OSUR), Rennes, FranceGéosciences Rennes, CNRS – Univ. Rennes 1 – Observatoire des Sciences de L'Univers de Rennes (OSUR), Rennes, FranceInstitut de Physique du Globe de Paris, Sorbonne Paris Cité, Université Paris Diderot, UMR CNRS 7154, 1 rue Jussieu, 75005 Paris, FranceGéosciences Rennes, CNRS – Univ. Rennes 1 – Observatoire des Sciences de L'Univers de Rennes (OSUR), Rennes, FranceSchool of Earth and Space Sciences, Peking University, Beijing, ChinaCenter for Earth Observation and Digital Earth, Chinese Academy of Sciences, Beijing, ChinaInstitut de Physique du Globe de Paris, Sorbonne Paris Cité, Université Paris Diderot, UMR CNRS 7154, 1 rue Jussieu, 75005 Paris, FranceGéosciences Rennes, CNRS – Univ. Rennes 1 – Observatoire des Sciences de L'Univers de Rennes (OSUR), Rennes, FranceCenter for Earth Observation and Digital Earth, Chinese Academy of Sciences, Beijing, ChinaThe topographic evolution of continents and especially the growth and dismembering of mountain ranges plays a major role in the tectonic evolution of orogenic systems, as well as in regional or global climate changes. A large number of studies have concentrated on the description, quantification and dating of relief building in active mountain ranges. However, deciphering the topographic evolution of a continental area submitted to recurrent tectonic deformation over several hundred millions of years remains a challenge. Here we present a synthesis of the tectonic, geochronological and sedimentological data available on the intracontinental Tian Shan Range to describe its general topographic evolution from Late Palaeozoic to Early Tertiary. We show that this evolution has occurred in two very distinct geodynamic settings, initiating during the Carboniferous in an ocean subduction – continent collision tectonic context before becoming, from Early Permian, purely intra-continental. We show that during most of the Mesozoic, the topography is mostly characterized by a progressive general decrease of the relief. Nonetheless localized, recurrent deformation induced the formation of small-scale reliefs during that period. These deformations were driven by far field effects of possibly several geodynamic processes in a way that still remains to be fully understood.http://www.adv-geosci.net/37/7/2013/adgeo-37-7-2013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author M. Jolivet
G. Heilbronn
C. Robin
L. Barrier
S. Bourquin
Zh. Guo
Y. Jia
L. Guerit
W. Yang
B. Fu
spellingShingle M. Jolivet
G. Heilbronn
C. Robin
L. Barrier
S. Bourquin
Zh. Guo
Y. Jia
L. Guerit
W. Yang
B. Fu
Reconstructing the Late Palaeozoic – Mesozoic topographic evolution of the Chinese Tian Shan: available data and remaining uncertainties
Advances in Geosciences
author_facet M. Jolivet
G. Heilbronn
C. Robin
L. Barrier
S. Bourquin
Zh. Guo
Y. Jia
L. Guerit
W. Yang
B. Fu
author_sort M. Jolivet
title Reconstructing the Late Palaeozoic – Mesozoic topographic evolution of the Chinese Tian Shan: available data and remaining uncertainties
title_short Reconstructing the Late Palaeozoic – Mesozoic topographic evolution of the Chinese Tian Shan: available data and remaining uncertainties
title_full Reconstructing the Late Palaeozoic – Mesozoic topographic evolution of the Chinese Tian Shan: available data and remaining uncertainties
title_fullStr Reconstructing the Late Palaeozoic – Mesozoic topographic evolution of the Chinese Tian Shan: available data and remaining uncertainties
title_full_unstemmed Reconstructing the Late Palaeozoic – Mesozoic topographic evolution of the Chinese Tian Shan: available data and remaining uncertainties
title_sort reconstructing the late palaeozoic – mesozoic topographic evolution of the chinese tian shan: available data and remaining uncertainties
publisher Copernicus Publications
series Advances in Geosciences
issn 1680-7340
1680-7359
publishDate 2013-12-01
description The topographic evolution of continents and especially the growth and dismembering of mountain ranges plays a major role in the tectonic evolution of orogenic systems, as well as in regional or global climate changes. A large number of studies have concentrated on the description, quantification and dating of relief building in active mountain ranges. However, deciphering the topographic evolution of a continental area submitted to recurrent tectonic deformation over several hundred millions of years remains a challenge. Here we present a synthesis of the tectonic, geochronological and sedimentological data available on the intracontinental Tian Shan Range to describe its general topographic evolution from Late Palaeozoic to Early Tertiary. We show that this evolution has occurred in two very distinct geodynamic settings, initiating during the Carboniferous in an ocean subduction – continent collision tectonic context before becoming, from Early Permian, purely intra-continental. We show that during most of the Mesozoic, the topography is mostly characterized by a progressive general decrease of the relief. Nonetheless localized, recurrent deformation induced the formation of small-scale reliefs during that period. These deformations were driven by far field effects of possibly several geodynamic processes in a way that still remains to be fully understood.
url http://www.adv-geosci.net/37/7/2013/adgeo-37-7-2013.pdf
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