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Surface-offset gathers from elastic reverse time migration and velocity analysis

机译:表面偏移从弹性相反时间迁移和速度分析中聚集

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Angle-domain common-image gathers (ADCIGs) from elastic reverse time migration (ERTM) are valuable tools for seismic elastic velocity estimation. Traditional ADCIGs are based on the concept of common-offset domains, but common-shot domain implementations are often favored for computational cost considerations. Surface-offset gathers (SOGs) built from common-offset migration may serve as an alternative to the common-shot ADCIGs. We have developed a theoretical kinematic framework between these two domains, and we determined that the common SOG gives an alternative measurement of kinematic correctness in the presence of incorrect velocity. Specifically, we exploit analytical expressions for the image misposition between these two domains, with respect to the traveltime perturbation caused by velocity errors. Four formulations of the PP and PS residual moveout functions are derived and provide insightful information of the velocity error, angle, and PS velocity ratio contained in ERTM gathers. The analytical solutions are validated with homogeneous examples with a series of varied parameters. We found that the SOGs may perform in the way of simplicity and linearity as an alternative to the common-shot migration. To make a full comparison with ADCIGs, we have developed a cost-effective workflow of ERTM SOGs. A fast vector P- and S-wave decomposition can be obtained via spatial gradients at selected time steps. A selected ERTM imaging condition is then modified in which the migration is done by offset groups between each source and receiver pair for each P- and S-wave decomposition. Two synthetic (marine and land) examples are used to demonstrate the feasibility of our methods.
机译:来自弹性相反时间迁移(ERTM)的角度域的常见图像聚集(ADCIG)是用于地震弹性速度估计的有价值的工具。传统的ADCIGS基于共同偏移域的概念,但常见的域实现通常有利于计算成本考虑。从常见偏移迁移构建的表面偏移聚集(SOG)可以作为共同拍摄的ADCIG的替代品。我们在这两个域之间开发了一个理论的运动框架,我们确定了常见的萼片在存在不正确的速度存在下提供运动正确性的替代测量。具体地,我们在由速度误差引起的旅行时间扰动方面利用了对这两个域之间的图像失误的分析表达式。推导出PP和PS残差函数的四种配方,并提供ertm集合中包含的速度误差,角度和PS速度比的富有峰值信息。分析解决方案用均匀示例验证,具有一系列变化的参数。我们发现SOG可能以简单性和线性的方式表现为共同拍摄迁移的替代方案。要与ADCIG进行完整比较,我们开发了ERTM SOG的成本效益工作流程。可以通过所选时间步骤的空间梯度获得快速载体p和S波分解。然后修改所选择的ERTM成像条件,其中迁移由每个源极和接收器对之间的偏移组进行,用于每个P和S波分解。两个合成(海洋和土地)例子用于证明我们方法的可行性。

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