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Precision Evaluation and Characteristics Analysis of the Coseismic Deformation Field of the 12th May 2008 Wenchuan Ms8.0 Earthquake

机译:2008年5月12日汶川Ms8.0地震同震形变场的精度评估与特征分析。

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Based on the improved DInSAR technology,this paper obtained the whole coseismic deformation field of Wenchuan Ms8.0 earthquake by 128 frames of Leverl. O data of ALOS PALSAR.By comparing with the continuous GPS survey results,the precision of coseismic deformation field was estimated as about 9.5cm,better than half-wavelength of L-band. The whole coseismic deformation stripe has a total length of about 300km,which encircles the NE-trend seismic ruptures,and is mostly distributed within 19-100km from the fault rupture. The spatial distribution of coseismic deformation gradually narrows down from southwest to northeast,owing to the fact that the seismic energy gradually decayed along the NE-trend from Yingxiu where the seismic fracture begins to Qingchuan where it ends. There is a weak coherence zone near the seismic rupture relating to strong displacements,such as landslide,mud and rock flow,etc. And this weak coherence zone obviously extends wider in south Beichuan than in north Beichuan,which is corresponding to the fact that two parallel rupture faults exist in south Beichuan while only one exists in north Beichuan. The 471-track deformation is produced mainly by Qingchuan Ms6.4 dextral-strike aftershock and other strong aftershocks,and therefore its deformation field is discontinuous with adjacent tracks. As a whole,northwest plate-Bayankala Block was uplifted,while southeast plate-rigid Sichuan Basin subsided,and both sides of the seismic rupture were uplifted.But there exist one subsided zone 10-30km away from the rupture in the Bayankala Block.Synthetically analysis shows that,under the effect of the huge eastward pushing force from Tibet,the Bayankala Block was resisted by the rigid sichuan Basin when it thrust along the high-angle seismic rupture,and then its east margin bent to form a subsided zone to absorb and release the strong eastward thrusting force.
机译:在改进的DInSAR技术的基础上,利用128个Leverl框架获得了汶川Ms8.0地震的整个同震形变场。 OLOS PALSAR的数据。通过与连续GPS测量结果进行比较,估计同震形变场的精度约为9.5cm,优于L波段的半波长。整个同震形变带的总长度约为300 km,围绕NE趋势地震破裂,且大部分分布在断层破裂的19-100 km之内。同震变形的空间分布从西南向东北逐渐缩小,这是由于地震能量沿着从地震断裂开始的映秀到青川结束的东北方向逐渐衰减的事实。地震破裂附近有一个弱相干区,与强位移有关,例如滑坡,泥浆和岩石流等。而且这种弱的相干带明显在北川南部比北北川更宽,这对应于这样一个事实,即北川南部存在两个平行的断裂断裂,而北川北部只有一个断裂断裂。 471轨变形主要是由青川Ms6.4右旋余震和其他强余震产生的,因此它的变形场与相邻轨不连续。总体而言,西北板块—Bayankala块隆起,而东南板块刚性的四川盆地平缓,地震破裂的两侧都被隆起。但是,Bayankala块中有一个距破裂10-30 km的陷落带。分析表明,在西藏巨大的东推力的作用下,巴颜喀拉地块沿高角度地震破裂带受到刚性四川盆地的抵抗,然后其东缘弯曲形成一个陷落带吸收并释放强大的向东推力。

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