Extending full-plate tectonic models into deep time: Linking the Neoproterozoic and the Phanerozoic

AS Merdith, SE Williams, AS Collins, MG Tetley… - Earth-Science …, 2021 - Elsevier
Recent progress in plate tectonic reconstructions has seen models move beyond the
classical idea of continental drift by attempting to reconstruct the full evolving configuration of …

Central China orogenic belt and amalgamation of East Asian continents

Y Dong, S Sun, M Santosh, J Zhao, J Sun, D He… - Gondwana …, 2021 - Elsevier
Abstract The Central China Orogenic Belt (CCOB) comprises, from the east to the west, the
Tongbai-Dabie, Qinling, Qilian and Kunlun Orogens, and preserves abundant and important …

Tectonic evolution of the Qilian Shan: An early Paleozoic orogen reactivated in the Cenozoic

AV Zuza, C Wu, RC Reith, A Yin, J Li… - GSA …, 2018 - pubs.geoscienceworld.org
Abstract The Qilian Shan, located along the northeastern margin of the Tibetan Plateau, has
experienced multiple episodes of tectonic deformation, including Neoproterozoic continental …

Granitic record of the assembly of the Asian continent

T Wang, Y Tong, H Huang, H Zhang, L Guo, Z Li… - Earth-Science …, 2023 - Elsevier
The Asian continent consists of many continental blocks that assembled during the
Phanerozoic, accompanied by widespread granitoids. By compiling a series of digital maps …

Cenozoic cooling history of the North Qilian Shan, northern Tibetan Plateau, and the initiation of the Haiyuan fault: Constraints from apatite-and zircon-fission track …

B Li, X Chen, AV Zuza, D Hu, W Ding, P Huang, S Xu - Tectonophysics, 2019 - Elsevier
The growth of the Tibetan Plateau resulted primarily from India-Asia convergence since
initial collision at 65–55 Ma. The Cenozoic Qilian Shan thrust belt and the left-slip strike …

Early Neoproterozoic magmatic imprints in the Altun-Qilian-Kunlun region of the Qinghai-Tibet Plateau: Response to the assembly and breakup of Rodinia …

Y Peng, S Yu, S Li, J Zhang, Y Liu, Y Li… - Earth-Science Reviews, 2019 - Elsevier
Abstract The Altun-Qilian-Kunlun Mountain (AQK), located on the northeastern margin of the
Qinghai-Tibet Plateau, experienced multiple Neoproterozoic magmatic and metamorphic …

[HTML][HTML] Underthrusting and duplexing beneath the northern Tibetan Plateau and the evolution of the Himalayan-Tibetan orogen

AV Zuza, C Wu, Z Wang, DA Levy, B Li… - …, 2019 - pubs.geoscienceworld.org
Abstract The Cenozoic Qilian Shan thrust belt is the northern margin of the Tibetan Plateau,
which developed in part due to progressive India-Asia convergence during Himalayan …

Cenozoic multi-phase deformation in the Qilian Shan and out-of-sequence development of the northern Tibetan Plateau

B Li, AV Zuza, X Chen, D Hu, Z Shao, B Qi, Z Wang… - Tectonophysics, 2020 - Elsevier
Abstract Uplift of the Tibetan Plateau and the distribution of deformation across it are the
result of India-Asia collision, which bring an opportunity of understanding intracontinental …

[HTML][HTML] 祁连造山带断裂构造体系, 深部结构与构造演化

陈宣华, 邵兆刚, 熊小松, 高锐, 刘雪军, 王财富, 李冰… - 中国地质, 2019 - cgsjournals.com
祁连造山带处在特提斯构造域的北缘, 经历了早古生代原特提斯洋发育以来的构造演化,
是青藏高原东北缘高原隆升与扩展的关键构造带. 本文依据区域地质调查与构造地质填图 …

Tectonics of the Eastern Kunlun Range: Cenozoic reactivation of a Paleozoic‐early Mesozoic orogen

C Wu, AV Zuza, X Chen, L Ding, DA Levy, C Liu… - …, 2019 - Wiley Online Library
Abstract The Eastern Kunlun Range in north Tibet, located along the northern margin of the
eastern Tethyan orogenic system, records evidence for continental break‐up and ocean …