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Polarity-consistent excitation amplitude imaging condition for elastic reverse time migration

机译:弹性逆时偏移的极性一致激发振幅成像条件

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摘要

Imaging conditions can not only affect the computational efficiency and storage cost of reverse time migration (RTM) but determine the quality of the final migrated images. This paper extends the idea of the well amplitude-preserved and highly-efficient excitation amplitude imaging condition from acoustic RTM to elastic RTM. For elastic RTM, the maximum amplitude of the separated P-wave and the corresponding image time of each grid point are saved during the forward modeling of the source wavefield and then PP and PS images are obtained by dividing the separated P-and S-waves of the backward-propagated receiver wavefield by the precomputed P-waves at each grid point that satisfies the image time. However, polarity reversals of the PS image will cause destructive interference when the stacked image is needed. In order to solve this problem, we propose the polarity-consistent excitation amplitude imaging condition by combining the excitation amplitude imaging condition with a shot-domain polarity reversal correction method. Then we provide the detailed realization process of this imaging condition in elastic RTM. By utilizing the relatively stable and well amplitude-preserved source-normalized cross-correlation imaging condition as a comparison, we testify to the feasibility and validity of the proposed imaging condition in the aspects of amplitude preservation property, imaging capability of complex structures, storage cost and computational efficiency. Considering the balance between the efficiency and image quality, the polarity-consistent excitation amplitude imaging condition can be a good choice for elastic RTM.
机译:成像条件不仅会影响逆向时间迁移(RTM)的计算效率和存储成本,而且还会确定最终迁移的图像的质量。本文将保持良好的振幅和高效的激发振幅成像条件的概念从声学RTM扩展到了弹性RTM。对于弹性RTM,在源波场的正向建模过程中保存了分离的P波的最大振幅和每个网格点的相应图像时间,然后通过分离分离的P和S波获得PP和PS图像满足成像时间的每个网格点上预先计算的P波对后向传播的接收器波场的影响。但是,当需要堆叠图像时,PS图像的极性反转将导致相消干扰。为了解决这个问题,我们通过结合激发振幅成像条件和散斑域极性反转校正方法,提出了极性一致的激发振幅成像条件。然后,我们提供了在弹性RTM中这种成像条件的详细实现过程。通过利用相对稳定且振幅保持良好的源归一化互相关成像条件进行比较,从振幅保持特性,复杂结构的成像能力,存储成本等方面验证了该成像条件的可行性和有效性。和计算效率。考虑到效率和图像质量之间的平衡,极性一致的激励振幅成像条件可能是弹性RTM的不错选择。

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