Kinematics Along the Qingchuan Fault and Deformation Pattern in the Eastern Tibetan Plateau

IF 3.3 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Tectonics Pub Date : 2024-08-06 DOI:10.1029/2023tc008075
Haoyue Sun, Honglin He, Yasutaka Ikeda, Ken'ichi Kano, Wei Gao, Wen Sun, Feng Shi, Peng Su, Tomoo Echigo, Shinsuke Okada, Yoshiki Shirahama
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Abstract

The accommodation of the substantial eastward crustal motion of the Bayan Har block characterizes the dynamics of faults located at the eastern Tibetan Plateau. However, uncertainties persist concerning the manner and amount of deformation distributed on these faults, with slip senses and rates constituting critical factors. In the northeastern segment of the Longmenshan thrust zone, the contentious activity and the unknown geologic slip rate present challenges. This study, focusing on the Qingchuan fault, the predominant fault within the northeastern Longmenshan, employed satellite imagery interpretation, displaced fluvial terraces surveying, displacement measurements, and chronological analysis to comprehensively characterize its fault activity. Our investigation robustly demonstrates the Qingchuan fault has been active since the late Quaternary, and is primarily marked with a pronounced dextral slip at a rate of 0.6–1.0 mm/year. By quantitatively assessing the deformation rates of the faults at the eastern Tibetan Plateau, we propose that they sufficiently accommodate the entire eastward crustal movement of the Bayan Har block; thereby no additional deformation propagates beyond the Qingchuan fault. Furthermore, we introduce a subblock model to elucidate the regional crustal deformation pattern, wherein the eastward movement of the Bayan Har block transfers to the northeastward movement of the Bikou subblock. This movement results in reverse slip patterns for the Minjiang and Huya faults, while the Beichuan and Qingchuan faults predominantly experience dextral displacements. The complex strain partitioning within the northern Longmenshan range underscores the observed variations in slip patterns across different segments of the Longmenshan thrust zone, advancing our understanding of fault behavior and the orchestration of crustal deformation in this intricate tectonic framework.
青藏高原东部青川断层运动学与变形模式
巴颜喀拉地块地壳大幅向东运动的适应性是青藏高原东部断层动态的特征。然而,这些断层的变形方式和变形量仍存在不确定性,其中滑动感应和速率是关键因素。在龙门山推力带东北段,有争议的活动和未知的地质滑动速率带来了挑战。本研究以龙门山东北段的主要断层--青川断层为研究对象,通过卫星图像判读、位移阶地测量、位移测量和年代分析等方法,对其断层活动特征进行了综合分析。我们的研究有力地证明了青川断层自第四纪晚期开始活动,主要表现为明显的右旋滑动,速率为 0.6-1.0 毫米/年。通过定量评估青藏高原东部断层的变形速率,我们认为这些断层足以容纳巴颜哈拉地块的全部地壳东移,因此没有额外的变形传播到青川断层之外。此外,我们还引入了一个子块模型来阐明区域地壳变形模式,即巴颜哈尔块体的东移转移到碧口子块体的东北移。这种运动导致岷江和虎牙断层出现反向滑动模式,而北川和青川断层则主要出现右旋位移。龙门山山脉北部复杂的应变分区凸显了所观测到的龙门山推覆带不同地段的滑动模式的变化,加深了我们对这一错综复杂的构造框架中断层行为和地壳变形协调的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Tectonics
Tectonics 地学-地球化学与地球物理
CiteScore
7.70
自引率
9.50%
发文量
151
审稿时长
3 months
期刊介绍: Tectonics (TECT) presents original scientific contributions that describe and explain the evolution, structure, and deformation of Earth¹s lithosphere. Contributions are welcome from any relevant area of research, including field, laboratory, petrological, geochemical, geochronological, geophysical, remote-sensing, and modeling studies. Multidisciplinary studies are particularly encouraged. Tectonics welcomes studies across the range of geologic time.
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