Formation and evolution of Xianshuihe Fault Belt in the eastern margin of the Tibetan Plateau: Constraints from structural deformation and geochronology

被引:11
|
作者
Chen, Yingtao [1 ]
Zhang, Guowei [2 ]
Lu, Rukui [2 ]
Luo, Tingting [3 ]
Li, Yang [2 ]
Yu, Wenxin [1 ]
机构
[1] Xian Univ Sci & Technol, Coll Geol & Environm, 58 Yanta Rd, Xian, Shaanxi, Peoples R China
[2] Northwest Univ, Dept Geol, State Key Lab Continental Dynam, Xian, Peoples R China
[3] Shaanxi Yanchang Petr Grp Co Ltd, Res Inst, Xian, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
eastern margin of the Tibetan Plateau; geochronology; structural deformation; Xianshuihe Fault Belt; Zheduoshan batholith; RED-RIVER; SOUTHWESTERN SICHUAN; ZONE; CHINA; SYSTEM; PETROGENESIS; METAMORPHISM; EMPLACEMENT; KINEMATICS; TECTONICS;
D O I
10.1002/gj.3908
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The Xianshuihe Fault Belt (XSF), along which the syntectonic Zheduoshan batholith was emplaced, has great significance for the reconstruction of the tectonic framework in the eastern margin of the Tibetan Plateau. In this contribution, formation process and evolution of the XSF are discussed based on the structural deformation in the field and the geochronology of Zheduoshan batholith. The results show that the XSF current arc-shaped protrusion to the north-east probably was formed by a fracture of the clockwise rotation compression that extended northward to the periphery with the eastern Himalayan tectonic syntaxis as the centre. It is a complex fault belt formed by the superposition of multi-stage structures. In the early-stage formation and evolution of the XSF, the Oligocene-Miocene migmatite zone and Miocene granites of the Zheduoshan batholith were emplaced. Among them, the lower limit of the XSF's initial activity time was not less than 47 Ma that was limited by the Zircon U-Pb geochronology of migmatite zone formed under the compression system. During the emplacement of Miocene granites, the XSF underwent a process from compression to sinistral strike-slip, and the geochronology indicates that the onset of the XSF sinistral strike slip should not be less than 14 Ma. After syntectic magmatism, the XSF also experienced the shear deformation (from ductile to brittle) with sinistral kinematics.Ar-40-(39)Argeochronology results show that the ductile shear deformation mainly occurred around 5.5-3.2 Ma and accompanied a staged and differential uplift from north to south. It extended to the south along the weak crustal zone of Anninghe, Daliangshan, Xiaojiang, and other faults, forming the Xianshuihe-Anninghe-Xiaojiang sinistral strike-slip fault system on the eastern margin of the Tibetan Plateau, and large-scale sinistral strike slip began around 5 Ma. Our new insights lay a foundation for understanding and dissecting the formation and evolution of the Tibetan Plateau eastern margin.
引用
收藏
页码:7953 / 7976
页数:24
相关论文
共 50 条
  • [41] Near-surface Geothermal Gradient Observation and Geothermal Analyses in the Xianshuihe Fault Zone, Eastern Tibetan Plateau
    Liu, Qianqian
    Shi, Yanan
    Wei, Dongping
    Han, Peng
    Chen, Shunyun
    Liu, Peixun
    Liu, Liqiang
    ACTA GEOLOGICA SINICA-ENGLISH EDITION, 2017, 91 (02) : 414 - 428
  • [42] Late Quaternary Slip-rates and Slip Partitioning on the Southeastern Xianshuihe Fault System, Eastern Tibetan Plateau
    CHEN Guihua
    XU Xiwei
    WEN Xueze
    CHEN Yue-Gau
    Acta Geologica Sinica(English Edition), 2016, 90 (02) : 537 - 554
  • [43] Near-surface Geothermal Gradient Observation and Geothermal Analyses in the Xianshuihe Fault Zone,Eastern Tibetan Plateau
    LIU Qianqian
    SHI Yanan
    WEI Dongping
    HAN Peng
    CHEN Shunyun
    LIU Peixun
    LIU Liqiang
    Acta Geologica Sinica(English Edition), 2017, 91 (02) : 414 - 428
  • [44] Geological Evolution of the Longmenshan Intracontinental Composite Orogen and the Eastern Margin of the Tibetan Plateau
    Liu, Shugen
    Deng, Bin
    Li, Zhiwu
    Jansa, Luba
    Liu, Shun
    Wang, Guozhi
    Sun, Wei
    JOURNAL OF EARTH SCIENCE, 2013, 24 (06) : 874 - 890
  • [45] Geological evolution of the longmenshan intracontinental composite orogen and the eastern margin of the Tibetan Plateau
    Shugen Liu
    Bin Deng
    Zhiwu Li
    Luba Jansa
    Shun Liu
    Guozhi Wang
    Wei Sun
    Journal of Earth Science, 2013, 24 : 874 - 890
  • [46] Geological Evolution of the Longmenshan Intracontinental Composite Orogen and the Eastern Margin of the Tibetan Plateau
    刘树根
    邓宾
    李智武
    Luba Jansa
    刘顺
    王国芝
    孙玮
    Journal of Earth Science, 2013, (06) : 874 - 890
  • [47] Geological Evolution of the Longmenshan Intracontinental Composite Orogen and the Eastern Margin of the Tibetan Plateau
    刘树根
    邓宾
    李智武
    Luba Jansa
    刘顺
    王国芝
    孙玮
    Journal of Earth Science, 2013, 24 (06) : 874 - 890
  • [48] Present-day Block Movement and Fault Activity on the Eastern Margin of the Tibetan Plateau
    Tang Wenqing
    Zhang Yongshuang
    Zhang Qingzhi
    Zhou Hongfu
    Pan Zhongxi
    Li Jun
    Yang Cheng
    ACTA GEOLOGICA SINICA-ENGLISH EDITION, 2016, 90 (02) : 456 - 466
  • [49] Present-day Block Movement and Fault Activity on the Eastern Margin of the Tibetan Plateau
    TANG Wenqing
    ZHANG Yongshuang
    ZHANG Qingzhi
    ZHOU Hongfu
    PAN Zhongxi
    LI Jun
    YANG Cheng
    Acta Geologica Sinica(English Edition), 2016, 90 (02) : 456 - 466
  • [50] Late Cenozoic tectonic deformation of the Haiyuan fault zone in the northeastern margin of the Tibetan Plateau
    Wang, Weitao
    Zhang, Peizhen
    Zheng, Dewen
    Pang, Jianzhang
    Earth Science Frontiers, 2014, 21 (04) : 266 - 274