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3D elastic orthorhombic anisotropic full waveform inversion: Application to field OBC data

机译:3D弹性正晶圆脉各向异性全波形反演:用于现场obc数据的应用

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摘要

For the purpose of extracting higher resolution information from a 3D field data set, we apply a 3D elastic orthorhombic (ORT) anisotropic full waveform inversion (FWI) to hopefully better represent the physics of the Earth. We utilize what we consider as the optimal parameterization for surface acquired seismic data over a potentially orthorhombic media. This parameterization admits the possibility of incorporating a hierarchical implementation moving from higher anisotropy symmetry to lower ones. From the analysis of the radiation pattern of this new parameterization, we focus the inversion of the 3D data on the parameters that may have imprint on the data with minimal tradeoff, and as a result we invert for the horizontal P-wave velocity model, an ε_1 model, its orthorhombic deviation, and the shear wave velocity. The inverted higher resolution models provide reasonable insights of the medium.
机译:为了从3D场数据集中提取更高分辨率信息,我们应用3D弹性正反声(ORT)各向异性全波形反转(FWI),希望更好地代表地球的物理学。我们利用我们认为在潜在的正交介质上获得表面获取地震数据的最佳参数化。此参数化承认将从较高各向异性对称性移动到更低的对称性的分层实现的可能性。根据这种新参数化的辐射模式的分析,我们将3D数据的反演集中在具有最小折衷上的数据上可能具有压印的参数的反转,因此我们反转了水平P波速度模型, ε_1模型,其矫正偏差和剪切波速度。倒置的更高分辨率模型提供了对介质的合理洞察力。

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