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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Iterative multiparameter waveform inversion of precritical reflection data using prestack time Kirchhoff approximation
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Iterative multiparameter waveform inversion of precritical reflection data using prestack time Kirchhoff approximation

机译:基于叠前时间基尔霍夫近似的临界反射数据的迭代多参数波形反演

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摘要

We have studied elastic wave scattering and iterative inversion in the context of the Kirchhoff approximation. The approach is more consistent with the weak-contrast reflectivity functions of Zoeppritz equations as compared to the Born approximation. To reduce the computational cost associated with inversion, we demonstrated the use of amplitude-variation-with-offset (AVO) analysis, prestack time migrations (PSTMs), and the corresponding forward modeling in an iterative scheme. Forward modeling and migration/inversion operators are based on the double-square-root (DSR) equations of PSTM and linearized reflectivity functions. All operators involved in the inversion, including the background model for DSR and AVO, are defined in P-to-P traveltime and are updated at each iteration. Our method is practical for real data applications because all operators of the inversion are known to be applicable for standard methods. We have evaluated the inversion on synthetic and real data using the waveform characteristics of P-to-P and P-to-S data.
机译:我们已经在基尔霍夫近似的背景下研究了弹性波散射和迭代反演。与Born近似相比,该方法与Zoeppritz方程的弱对比度反射率函数更加一致。为了减少与反演相关的计算成本,我们在迭代方案中演示了使用偏移量振幅变化(AVO)分析,叠前时间偏移(PSTM)和相应的正向建模的用法。前向建模和偏移/反演算符基于PSTM的双平方根(DSR)方程和线性化反射率函数。反转涉及的所有运算符,包括DSR和AVO的背景模型,都在P-to-P行程时间中定义,并在每次迭代时更新。我们的方法对于实际数据应用是可行的,因为众所周知,反演的所有运算符都适用于标准方法。我们已经使用P-to-P和P-to-S数据的波形特性评估了合成数据和真实数据的反演。

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