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Paleoseismic study on the Pingdingshan-Annanba segments of the Altyn Tagh Fault based on offset clusters

机译:基于偏移聚类的阿尔金塔格断裂平顶山-安南坝段古地震研究

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摘要

Previous studies using paleoseismic trenches and numerical models proposed two different fault rupture models for the Pingdingshan-Annanba segments of the Altyn Tagh Fault, which are both poorly validated because of a lack of measurements of surface rupture displacements. In this paper, we use high-resolution satellite imagery to measure offset geomorphic markers. Taking the fault geometry into consideration, the most likely paleoseismic rupture parameters are determined by comparing the results of the cumulative offset probability densities (COPDs) and the empirical relationships of seismic parameter. The results show that the most recent earthquake (1270A.D.-1775A.D.) along the Suoerkuli segment only ruptured the Suoerkuli Valley, with a surface rupture length of 140 km, an average horizontal displacement of 3.12 m and a moment magnitude (Mw) of 7.4-7.6. The penultimate earthquake (676A.D.-1347A.D.) ruptured both the Annanba segment and part of the Suoerkuli segment with an average horizontal displacement of greater than 5 m, a surface rupture length of 120-260 km and Mw 7.4-7.8. The rupture parameters of the above two earthquakes demonstrate that the Suoerkuli and Annanba segments are individual fault segments which can rupture independently with a surface rupture length more than 100 km. The Pingdingshan double bend to the west of the Suoerkuli segment is likely to be an endpoint that inhibits the rupture propagation towards further west.
机译:先前使用古地震沟槽和数值模型进行的研究为阿尔金塔格断裂的平顶山-安南巴段提出了两种不同的断裂破裂模型,由于缺乏对表面破裂位移的测量,因此均未得到很好的验证。在本文中,我们使用高分辨率卫星图像来测量偏移地貌标记。考虑到断层的几何形状,通过比较累积偏移概率密度(COPDs)的结果和地震参数的经验关系来确定最可能的古地震破裂参数。结果表明,Suoerkuli段最近的地震(1270A.D.-1775A.D。)仅使Suoerkuli谷地破裂,表面破裂长度为140 km,平均水平位移为3.12 m,弯矩为( Mw)为7.4-7.6。倒数第二次地震(676A.D.-1347A.D。)破坏了安南巴段和Suoerkuli段的一部分,平均水平位移大于5 m,表面破裂长度为120-260 km,Mw为7.4-7.8 。上述两次地震的破裂参数表明,Suoerkuli和Annanba段是单独的断层段,可以独立破裂,地表破裂长度超过100 km。 Suoerkuli段以西的平顶山双弯曲可能是阻止破裂向更西端传播的终点。

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