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A study of perfectly matched layers for joint multicomponent reverse-time migration

机译:联合多组分反向时间迁移的完美匹配层研究

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摘要

Reverse-time migration in finite space requires effective boundary processing technology to eliminate the artificial truncation boundary effect in the migration result. On the basis of the elastic velocity-stress equations in vertical transversely isotropic media and the idea of the conventional split perfectly matched layer (PML), the PML wave equations in reverse-time migration are derived in this paper and then the high order staggered grid discrete schemes are subsequently given. Aiming at the "reflections" from the boundary to the computational domain, as well as the effect of seismic event's abrupt changes at the two ends of the seismic array, the PML arrangement in reverse-time migration is given. The synthetic and real elastic, prestack, multi-component, reverse-time depth migration results demonstrate that this method has much better absorbing effects than other methods and the joint migration produces good imaging results.
机译:有限空间的反向时间迁移需要有效的边界处理技术来消除迁移结果中的人为截断边界效应。本文基于垂直横向各向同性介质中的弹性速度-应力方程和常规分裂完美匹配层(PML)的思想,推导了逆时迁移中的PML波动方程,并给出了高阶交错网格离散方案。针对边界到计算域的“反射”,以及地震事件在地震阵列两端的突然变化的影响,给出了反时迁移中的PML排列。合成和实弹、预叠、多组分、反时深度迁移结果表明,该方法的吸收效果远优于其他方法,联合迁移效果较好。

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