基于D-InSAR的汶川Ms8.0地震三维同震形变反演及断层运动模型

Y. L. Chen, J. Wu, L. Guo, X. Wang, H. Tan, C. Y. Shen
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引用次数: 2

摘要

传统的D-InSAR(差分SAR干涉测量)只能监测沿视线方向的一维表面变形。为了克服这一局限性,结合D-InSAR技术反演的LOS位移、OKADA弹性半空间位错模型理论,结合现场调查的地表破裂分布和GPS、水平资料、重力测量反演的断层模型,反演地表同震位移方向,得到了汶川Ms8.0地震三维位移。首先,利用D-InSAR技术对6个相邻上升轨迹的36幅l波段PALSAR图像进行处理,得到了同震位移沿LOS方向;根据OKADA模型和龙门山断层逆冲断层运动模型,确定了地表同震位移的三个方向。利用LOS位移和相应的几何投影公式反演三维同震位移场,明显包括水平位移场和垂直变形等值线图。通过与OKADA位错模型和断层模型估算的三维位移值进行比较,本研究反演的三维位移值更详细,更真实地反映了地震特征。
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3D coseismic deformation inversion of Wenchuan Ms8.0 earthquake with D-InSAR and the fault movement model
Conventional D-InSAR (Differential SAR Interferometry) can only monitor 1-D surface deformation along LOS (line of sight) direction. In order to overcome this limitation and extract 3-D coseismic displacement, we combine the LOS displacement derived from D-InSAR technology, the OKADA elastic half space dislocation model theory, jointly the surface rupture distribution by field investigations and the fault model inverted by GPS, level data and gravity survey to retrieve the directions of surface co-seismic displacement, and then have got Wenchuan Ms8.0 Earthquake 3D displacement. Firstly, thirty six L-band PALSAR images of six adjacent ascending tracks are processed with D-InSAR technology to obtain the coseismic displacements along LOS direction. According to the OKADA model and the thrust fault movement model of the Long-Men-Shan Fault , we specify the three directions of surface coseismic displacements. And thus the 3D coseismic displacement field is then recovered by using LOS displacement and relevant geometric projection formulas, obviously including horizontal displacements field and vertical deformation contour maps. By comparing with the 3D displacement estimated from OKADA dislocation model and fault model, the displacement retrieved in this study can give more detail, and reflect seismic characteristics more truly.
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