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首页> 外文期刊>Journal of geodynamics >Determining fault slip distribution of the Chi-Chi Taiwan earthquake with GPS and InSAR data using triangular dislocation elements
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Determining fault slip distribution of the Chi-Chi Taiwan earthquake with GPS and InSAR data using triangular dislocation elements

机译:利用三角位错元素用GPS和InSAR数据确定台湾集集地震的断层滑动分布

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摘要

The reactivation of the Chelungpu fault triggered the 20 September 1999 Chi-Chi Taiwan earthquake (M_w = 7.6) which caused a 100-km long surface rupture that trends north-south. We reconstruct the fault geometry using 1068 planar triangular dislocation elements that approximate more realistically the curved three-dimensional fault surface. The fault slip distribution is then determined with the observed GPS coseismic displacements as well as interferometric synthetic aperture radar (InSAR) data. The results show that our smooth 3D fault slip model has improved the fit to the geodetic data by 44% compared with the previously published inversions. The slip distribution obtained both by inversion of GPS data only and by joint inversion of GPS and InSAR data indicates that notable slips occur on the sub-horizontal decollement at the depth of 6.1-8.9 km.
机译:切伦浦断裂的复活引发了1999年9月20日的台湾集集地震(M_w = 7.6),造成了100公里长的地表破裂,并向南北延伸。我们使用1068个平面三角形位错元素重建断层几何形状,这些元素更逼真的近似于弯曲的三维断层表面。然后利用观测到的GPS同震位移以及干涉合成孔径雷达(InSAR)数据确定断层滑动分布。结果表明,与先前公布的反演相比,我们的光滑3D断层滑动模型使对大地测量数据的拟合度提高了44%。仅通过GPS数据反演以及通过GPS和InSAR数据的联合反演获得的滑动分布表明,在6.1-8.9 km深度的亚水平偏斜上出现了明显的滑动。

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