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Geological and geomorphological evidence for active faulting of the southern Liupanshan fault zone, NE Tibetan Plateau

机译:青藏高原东北六盘山断裂带活动断裂的地质和地貌证据

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The southern Liupanshan fault zone (SLFZ) has been active during the Holocene and accommodates complex deformation between the compressional Liupanshan Mountain and the extensional Weihe Graben. We characterized the active faulting of the SLFZ using interpretations of high-resolution satellite images, digital elevation models derived from structure-from-motion models, combined with field investigations. The presence of well-preserved linear fault troughs, scarps, knickpoints, offset streams and ridges, and landslides along the SLFZ indicate that surface-rupturing earthquakes have occurred along the SLFZ in the Holocene. Evidence from paleoseismic trenching indicates that the most recent earthquake occurred between 1607 +/- 77 BCE and 1070 +/- 90 CE, and thus may have been the 600 CE historical earthquake. The estimated magnitude of this earthquake is Mw 6.7. Radiometric dating of an offset fluvial terrace indicates a late Pleistocene to Holocene left-lateral slip rate of 1.5 +/- 0.3 mm/yr. Our geologic and geomorphic observations show that the SLFZ may extend into the Weihe Graben where the slip is transferred onto other active faults within the Weihe Graben. (C) 2019 Elsevier B.V. All rights reserved.
机译:六盘山南部断裂带(SLFZ)在全新世期间一直活跃,并适应了六盘山压缩岩和伸展的渭河格拉本之间的复杂变形。我们使用高分辨率卫星图像的解释,从运动结构模型得出的数字高程模型以及野外调查来表征SLFZ的活动断层。 SLFZ沿线保存完好的线性断层谷,陡坡,拐点,偏流和山脊以及滑坡的存在表明,全新世SLFZ沿线发生了地表破裂地震。古地震trench的证据表明,最近的地震发生在1607 +/- 77 BCE和1070 +/- 90 CE之间,因此可能是600 CE历史地震。估计这次地震的烈度为6.7兆瓦。偏移河床阶地的放射性测年表明,晚更新世至全新世的左侧滑移速率为1.5 +/- 0.3 mm / yr。我们的地质和地貌观测表明,SLFZ可能延伸到渭河格拉本,在这里滑移被转移到渭河格拉本内的其他活动断层上。 (C)2019 Elsevier B.V.保留所有权利。

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