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Inversion of source parameters from near- and far-field observations: an application to the 1915 Fucino earthquake, central Apennines, Italy

机译:来自近场和远场观测的源参数反演:1915年Fucino地震的应用,意大利中部亚平宁山脉

摘要

We carry out a nonlinear joint inversion of P wave first-motion polarities and coseismic surface displacement data of the 1908 Messina earthquake. We model the earthquake using a single planar fault: Slip is at first assumed to be uniform across the whole fault, then independent in a small set of coplanar subfaults, and finally smoothly variable across the fault. The first two steps are accomplished using a global minimization technique. The main features of the retrieved model are very robust and independent of the seismic velocity profile, of the presence of questionable bench marks, and of the assumed residual distribution. The along-strike component of slip is about half the along-dip component, in agreement with the direction of the extensional stress axis retrieved from geological observations. Surface vertical displacement is consistent with tsunami data and with the morphology of the Messina Straits.
机译:我们对1908年墨西拿地震的P波初动极性和同震表面位移数据进行非线性联合反演。我们使用单个平面断层对地震进行建模:首先假定滑动在整个断层上是均匀的,然后在少量共面子断层中独立,最后在整个断层上平滑变化。前两个步骤是使用全局最小化技术完成的。检索到的模型的主要特征是非常强大的,并且与地震速度剖面,可疑基准标记的存在以及假定的残差分布无关。滑移的沿走向分量约为沿倾角分量的一半,这与从地质观测中获得的拉伸应力轴的方向一致。表面垂直位移与海啸数据以及墨西拿海峡的形态一致。

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