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Application of TRA to the Pre- and Post-Stack Imaging of a Salt Dome Flank

机译:TRA在盐丘侧翼叠前和叠后成像中的应用

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We present results of applying Time-Reversed Acoustics (TRA) to seismic imaging of a salt dome flank. We create a set of synthetic traces representing a multi-level, walk away VSP for a model composed of a simplified Gulf of Mexico vertical-velocity gradient and an embedded overhanging salt dome. To process these data, we first apply source-receiver reciprocity and the concepts of TRA to the synthetic traces. This creates a set of redatummed traces without having to perform any velocity analysis, moveout corrections or other processing. Each of these redatummed traces is equivalent to the output of a down-hole source and down-hole receiver pair. For quick turn around analyses, we can select from these redatummed traces only the zero-offset, or collocated, down-hole source/receiver pairs. For a more thorough analysis we utilize all the redatummed traces. We then apply conventional post- or pre-stack depth migration, respectively, to these traces to produce the final image of the salt dome flank. The migrated results show that the redatummed turning ray energy reflected from the salt dome flank is handled correctly by this method and produces effective images of the salt.
机译:我们提出将时间反向声学(TRA)应用于盐穹顶侧面地震成像的结果。对于由简化的墨西哥湾垂直速度梯度和嵌入式悬垂盐穹顶组成的模型,我们创建了一组表示多级走开VSP的合成迹线。为了处理这些数据,我们首先将源接收器互易性和TRA的概念应用于合成迹线。这样就创建了一组重新设置基准的迹线,而无需执行任何速度分析,偏移校正或其他处理。这些重新计算的迹线中的每条等效于井下源和井下接收器对的输出。为了快速进行周转分析,我们可以从这些重新设置基准的迹线中仅选择零偏移或并置的井下源/接收器对。为了进行更彻底的分析,我们利用了所有重新确定基准的迹线。然后,我们分别对这些迹线应用常规的叠后或叠前深度偏移,以生成盐穹顶侧面的最终图像。迁移的结果表明,通过这种方法可以正确处理从盐穹顶侧面反射的重新计算的转向射线能量,并产生有效的盐图像。

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