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Least-squares reverse time migration of marine data with frequency-selection encoding

机译:频率选择编码的海洋数据最小二乘逆时偏移

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摘要

The phase-encoding technique can sometimes increase the efficiency of the least-squares reverse time migration (LSRTM) by more than one order of magnitude. However, traditional random encoding functions require all the encoded shots to share the same receiver locations, thus limiting the usage to seismic surveys with a fixed spread geometry. We implement a frequency-selection encoding strategy that accommodates data with a marine streamer geometry. The encoding functions are delta functions in the frequency domain, so that all the encoded shots have unique nonoverlapping frequency content, and the receivers can distinguish the wavefield from each shot with a unique frequency band. Because the encoding functions are orthogonal to each other, there will be no crosstalk between different shots during modeling and migration. With the frequency-selection encoding method, the computational efficiency of LSRTM is increased so that its cost is comparable to conventional RTM for the Marmousi2 model and a marine data set recorded in the Gulf of Mexico. With more iterations, the LSRTM image quality is further improved by suppressing migration artifacts, balancing reflector amplitudes, and enhancing the spatial resolution. We conclude that LSRTM with frequency-selection is an efficient migration method that can sometimes produce more focused images than conventional RTM. © 2013 Society of Exploration Geophysicists.
机译:相位编码技术有时可以将最小二乘反向时间迁移(LSRTM)的效率提高一个数量级以上。但是,传统的随机编码功能要求所有已编码的镜头共享相同的接收器位置,因此将其使用限制在具有固定扩展几何形状的地震勘测中。我们实施了一种频率选择编码策略,该策略可以容纳具有海上拖缆几何形状的数据。编码函数是频域中的增量函数,因此所有编码镜头都具有唯一的不重叠频率内容,并且接收器可以区分具有唯一频带的每个镜头的波场。由于编码功能彼此正交,因此在建模和迁移过程中,不同镜头之间不会存在串扰。使用频率选择编码方法,可以提高LSRTM的计算效率,从而使其成本与Marmousi2模型和记录在墨西哥湾的海洋数据集的常规RTM相当。通过更多的迭代,可以通过抑制偏移伪影,平衡反射器幅度并增强空间分辨率来进一步提高LSRTM图像质量。我们得出结论,具有频率选择功能的LSRTM是一种有效的迁移方法,与传统的RTM相比,有时可以产生更多的聚焦图像。 ©2013勘探地球物理学家协会。

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