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Advances in three-dimensional deformation mapping from satellite radar observations: application to the 2003 Bam earthquake

机译:卫星雷达观测的三维变形映射的研究进展:应用于2003AM地震的应用

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The advance of the surface deformation measurement from synthetic aperture radar interferometry (InSAR) provides an opportunity of reinterpretation for the past controversial event in the geoscience community. According to the development of the multiple-aperture interferometry (MAI) method, three-dimensional (3D) surface displacements can be estimated with few centimetres accuracy by integrating InSAR and MAI observations. In this study, we provided a renewed fault model of the 2003 Bam earthquake using the advanced method. The 3D deformation map showed the clear distribution pattern of the right-lateral strike-slip fault as well as the additional information of an asymmetry of the surface deformation. To determine the optimal model parameters, we employed a two-segment fault model considering the multiple segments. As a result, two sub-parallel fault segments showing N-S trend were obtained. The model parameters of the second segment have relatively large uncertainties though, the first segment which is presumed as the causative fault of the Bam event has been well-modelled with precise model parameters. The more constrained fault model based on the 3D deformation field enabled us to suggest a possibility of a new interpretation and the better understanding of the fault behaviour.
机译:从合成孔径雷达干涉测量(INSAR)的表面变形测量的进展为地球科学区的过去争议事件提供了重新诠释的机会。根据多孔径干涉测量(MAI)方法的发展,通过整合INSAR和MAI观察,可以用几厘米的精度估计三维(3D)表面位移。在这项研究中,我们提供了使用先进方法的2003 BAM地震的重新发生故障模型。 3D变形图显示了右侧滑动故障的清晰分布图案以及表面变形的不对称的附加信息。为了确定最佳模型参数,我们使用考虑多个段的双段故障模型。结果,获得了两个显示N-S趋势的子并行故障段。第二段的模型参数具有相对较大的不确定性,因此被推测为BAM事件的原因故障的第一段具有精确的模型参数。基于3D变形字段的越来越大的故障模型使我们能够提出新的解释和更好地了解故障行为的可能性。

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