Abstract Late Quaternary strike-slip along the Taohuala Shan-Ayouqi fault zone and its tectonic implications in the Hexi Corridor and the southern Gobi Alashan, China
首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Late Quaternary strike-slip along the Taohuala Shan-Ayouqi fault zone and its tectonic implications in the Hexi Corridor and the southern Gobi Alashan, China
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Late Quaternary strike-slip along the Taohuala Shan-Ayouqi fault zone and its tectonic implications in the Hexi Corridor and the southern Gobi Alashan, China

机译:沿着河西走廊及其南戈山南戈山南方的北季度罢工滑倒及其构造影响

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AbstractThe Hexi Corridor and the southern Gobi Alashan are composed of discontinuous a set of active faults with various strikes and slip motions that are located to the north of the northern Tibetan Plateau. Despite growing understanding of the geometry and kinematics of these active faults, the late Quaternary deformation pattern in the Hexi Corridor and the southern Gobi Alashan remains controversial. The active E-W trending Taohuala Shan-Ayouqi fault zone is located in the southern Gobi Alashan. Study of the geometry and nature of slip along this fault zone holds crucial value for better understanding the regional deformation pattern. Field investigations combined with high-resolution imagery show that the Taohuala Shan fault and the E-W trending faults within the Ayouqi fault zone (F2 and F5) are left-lateral strike-slip faults, whereas the NW or WNW-trending faults within the Ayouqi fault zone (F1 and F3) are reverse faults. We collected Optically Stimulated Luminescence (OSL) and cosmogenic exposure age dating samples from offset alluvial fan surfaces, and estimated a vertical slip rate of 0.1–0.3mm/yr, and a strike-slip rate of 0.14–0.93mm/yr for the Taohuala Shan fault. Strata revealed in a trench excavated across the major fault (F5) in the Ayouqi fault zone and OSL dating results indicate that the most recent earthquake occurred between ca. 11.05±0.52ka and ca. 4.06±0.29ka. The geometry and kinematics of the Taohuala Shan-Ayouqi fault zone enable us to build a deformation pattern for the entire Hexi Corridor and the southern Gobi Alashan, which suggest that this region experiences northeastward oblique extrusion of the northern Tibetan Plateau. These left-lateral strike-slip
机译:<![cdata [ Abstract 河西走廊和南戈壁阿拉罕由不连续的一组积极故障组成,各种罢工和滑动运动位于北部北藏高原高原。尽管对这些积极故障的几何和运动学越来越了解,但河西走廊和南戈壁阿拉山的晚期四元变形模式仍存在争议。积极的E-W趋势Taohuala Shan-Ayouqi断层区位于南戈比阿拉邦南部。沿着该断层区域的滑动几何和性质的研究持有关键的价值,以便更好地理解区域变形模式。现场调查结合高分辨率图像表明,Taohuala Shan故障和Ayouqi断层区(F2和F5)内的EW趋势故障是左侧防撞故障,而Ayouqi故障内的NW或WNW趋势故障区域(F1和F3)是反向故障。从偏移冲积风扇表面收集光学刺激的发光(OSL)和宇宙发生的曝光年龄的约会样品,并估计垂直滑动速率为0.1-0.3mm / yr,并且对于桃花为0.1-0.93mm / yr的防击率为0.12-0.93mm / yr山故障。在AYOUQI断层区的主要故障(F5)挖掘出挖掘的沟槽中显示的地层显示,OSL约会结果表明CA之间发生最近的地震。 11.05±0.52kA和CA。 4.06±0.29ka。 Taohuala Shan-Ayouqi断层带的几何和运动学使我们能够为整个河西走廊和南戈比阿拉山建立一个变形模式,这表明该地区经历了北部北部高原的东北倾斜挤压。这些左侧滑动滑动

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