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Crustal Deformation of the Altyn Tagh Fault Based on GPS

机译:基于GPS的Altyn Tagh故障的地壳变形

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Knowledge of the slip behavior of the Altyn Tagh fault (ATF) has significant implications for our understanding of the tectonic deformation of the Tibetan Plateau. In this study, we process Global Positioning System (GPS) data spanning 2009-2017 across the western ATF, merge the solution with recently published GPS velocities, and obtain a dense GPS velocity field for northern Tibet. We introduce an elastic block model and estimate the fault slip rate, interseismic fault coupling (ISC), and seismic moment accumulation rate along the ATF. The estimated left-lateral strike-slip rate of the ATF decreases eastward from 12.80.4mm/a to 0.10.2mm/a. Results show a heterogeneous distribution of ISC along the fault, with the fault locking depth varying from 5 to 20km. The seismic moment accumulation rate is 2.16-2.37x10(18)N m/km along three segments between Sulamu Tagh and Aksay bends, where the accumulated seismic moment over the last five centuries could be balanced by earthquakes with magnitudes of Mw 7.7, Mw 7.6, and Mw 7.8, respectively. We calculate the ratio of the Indo-Eurasia convergence accommodated by the ATF and find that 10.3% of the convergence is accommodated along the fault by lateral extrusion; quantitative analysis of the strain rate, however, shows that a large part of the northern Tibet is not well described by elastic block rotation. Consequently, we suggest that a hybrid kinematic model that includes both block-like and continuous deformation is needed to better delineate the crustal deformation of the Tibetan Plateau.
机译:知识Altyn Tagh故障(ATF)的滑移行为对我们对藏高原的构造变形的理解具有重要意义。在本研究中,我们处理全球定位系统(GPS)跨西部ATF的2009-2017数据,并利用最近公布的GPS速度合并解决方案,并获得北西藏的密集GPS速度场。我们引入弹性块模型并估算故障滑动率,故障耦合(ISC),以及沿ATF的地震矩积累率。 ATF的估计左侧防撞速率从12.80.4mm / a至0.10.2mm / a向东减少。结果显示沿故障的ISC的异构分布,故障锁定深度从5到20km变化。沿着Sulamu Tagh和Aksay弯曲之间的三个段,地震矩积累速率为2.16-2.37×10(18)n m / km,在过去五世纪中的积累地震时刻可以通过地震平衡MW 7.7,MW 7.6的大小和MW 7.8分别。我们计算ATF的Indo-EuraSia收敛的比例,并发现10.3%的收敛沿着横向挤压容纳故障;然而,对应变速率的定量分析表明,由于弹性块旋转,北部的大部分是北部的大部分。因此,我们建议需要包括块状和连续变形的混合动力学模型来更好地描绘藏高原的地壳变形。

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