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IMPLEMENTATION OF 3-D PRESTACK KIRCHHOFF MIGRATION, WITH APPLICATION TO DATA FROM THE OUACHITA FRONTAL THRUST ZONE

机译:3D阶跃基尔霍夫偏移的实现,并应用于瓦希塔前冲断带的数据

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A 3-D prestack Kirchhoff migration is implemented and successfully applied to a 3-D data set from the Ouachita frontal thrust zone in southeastern Oklahoma. The algorithm uses data decomposition and operates efficiently both in multiprocessor vector and parallel environments. Image time maps are precomputed once for each survey point, regardless of how many times it is a source or receiver: and stored in random access disk files. These files, and the data traces, are read asynchronously during migration, Image time computation is done by two-point ray tracing to avoid interpolation between irregularly spaced rays or points on wavefronts. The same software can be used to depth migrate all input data geometries (slacked sections, common-source or common-receiver, or common-offset or common-midpoint gathers), The output images from the Ouachita field data show structural closure on folded thrust sheets of Wapanucka limestone, and repetition of litholoy caused by lateral displacement on the thrusts. [References: 34]
机译:已实施3-D叠前Kirchhoff偏移并将其成功应用于来自俄克拉荷马州东南部Ouachita正面逆冲带的3-D数据集。该算法使用数据分解,并且可以在多处理器矢量和并行环境中高效运行。影像时间图针对每个测量点预先计算一次,无论它是源还是接收器多少次:并存储在随机访问磁盘文件中。这些文件和数据迹线在迁移过程中是异步读取的。图像时间计算是通过两点光线跟踪来完成的,以避免在不规则间隔的光线或波阵面上的点之间进行插值。可以使用相同的软件深度迁移所有输入数据的几何形状(松弛部分,公共源或公共接收器,公共偏移或公共中点聚集)。Ouachita现场数据的输出图像显示折叠推力时的结构闭合Wapanucka石灰岩层,以及由推力的侧向位移引起的岩性重复。 [参考:34]

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