Multistage Strike-Slip Fault in the Narrowest Portion of the Qinling Orogen, Central China: Deformation Mechanism and Tectonic Significance

IF 1.8 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Lithosphere Pub Date : 2023-11-03 DOI:10.2113/2023/lithosphere_2023_202
Yiping Zhang, Xuanhua Chen, Yannan Wang, Andrew V. Zuza, Jin Zhang, Bing Li, Yongchao Wang, Ye Wang, Kui Liu, Lele Han, Beihang Zhang, Heng Zhao
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Abstract

Abstract The North Huicheng Basin strike-slip fault system is on the northeastern frontier of the Tibetan Plateau and separates the West and East Qinling differential orogeny. However, the deformation mechanism of this strike-slip fault system and its exact tectonic significance are unclear. Here, we carried out systematic field structural analysis, physical analog modeling, and multiproxy geochronological dating to address these issues. The field structural analysis indicates that the North Huicheng Basin strike-slip fault system was induced from the plate-like movement of the West and East Qinling Orogens, which underwent multiple left-lateral strike-slip faulting and controlled salient and recessed structures. The scaled physical analog experiment results confirm this hypothesis and reveal the primary spatial-temporal deformational kinematic process. Combined with published works, multiproxy geochronological dating (zircon U‒Pb age of 213 Ma, biotite 40Ar/39Ar age of 203 Ma, and apatite fission-track age of 56 Ma) outlines the main thermal history of the hanging wall. Based on the above facts, the integrated research suggests that multistage strike-slip faulting played a significant role in the main tectonic events, that is, late Triassic magmatic emplacement, Jurassic/Cretaceous local pull-apart, and Cenozoic rapid exhumation driven by Tibetan Plateau growth.
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秦岭造山带最窄段多期走滑断裂:变形机制及构造意义
北惠城盆地走滑断裂系位于青藏高原东北边界,分隔了西秦岭和东秦岭差异造山带。然而,该走滑断裂系统的变形机制及其确切的构造意义尚不清楚。为了解决这些问题,我们进行了系统的野外结构分析、物理模拟建模和多代理地质年代测年。野外构造分析表明,北惠城盆地走滑断裂系统是由西秦岭造山带和东秦岭造山带板块状运动诱发的,经历了多次左旋走滑断裂,控制着凸起和凹陷构造。尺度物理模拟实验结果证实了这一假设,揭示了主要的时空变形运动学过程。结合已发表的研究成果,采用多代用年代学方法(锆石U-Pb年龄为213 Ma,黑云母40Ar/39Ar年龄为203 Ma,磷灰石裂变径迹年龄为56 Ma)确定了上盘的主要热史。综合研究认为,多期走滑断裂作用在晚三叠世岩浆侵位、侏罗系/白垩系局部拉离、新生代青藏高原生长驱动下的快速掘出等主要构造事件中发挥了重要作用。
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来源期刊
Lithosphere
Lithosphere GEOCHEMISTRY & GEOPHYSICS-GEOLOGY
CiteScore
3.80
自引率
16.70%
发文量
284
审稿时长
>12 weeks
期刊介绍: The open access journal will have an expanded scope covering research in all areas of earth, planetary, and environmental sciences, providing a unique publishing choice for authors in the geoscience community.
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