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首页> 外文期刊>Journal of Seismic Exploration >ACOUSTIC-ELASTIC COUPLED FULL-WAVEFORM INVERSION IN THE LAPLACE DOMAIN WITH SCALED GRADIENT FOR IMPROVED DENSITY RECOVERY
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ACOUSTIC-ELASTIC COUPLED FULL-WAVEFORM INVERSION IN THE LAPLACE DOMAIN WITH SCALED GRADIENT FOR IMPROVED DENSITY RECOVERY

机译:带有缩放梯度的Laplace域中的声弹耦合全波形反演,可改善密度恢复

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摘要

Acoustic-clastic coupled full-waveform inversion in the Laplace domain is well suited for recovering P- and S-wave velocity (V-p and V-s, respectively), and density from marine seismic data because it can simulate waves that are generated in the fluid (sea water) and propagate into the solid (seafloor). However, density is not recovered as reliably as V-p and V-s. In this study, we show that the density recovery procedure using full-waveform inversion for acoustic-elastic coupled media can be improved by scaling the gradient for the steepest descent operation. Gradient scaling is a heuristic approach that multiplies the gradient by the square of the gradient summed in the depth direction. We found that this scaling scheme resulted in more accurate density as well as attenuated numerical artefacts. To validate the scaling scheme, we illustrate both synthetic and real data examples.
机译:拉普拉斯域中的声碎屑耦合全波形反演非常适合于从海洋地震数据中恢复P波和S波速度(分别为Vp和Vs)和密度,因为它可以模拟流体中产生的波(海水)并传播到固体(海底)中。但是,密度不能像V-p和V-s一样可靠地恢复。在这项研究中,我们表明通过缩放最陡下降操作的梯度可以改善使用声-波耦合介质使用全波形反演的密度恢复程序。梯度缩放是一种启发式方法,可将梯度乘以在深度方向求和的梯度的平方。我们发现,这种缩放方案导致更准确的密度以及衰减的数字伪像。为了验证缩放方案,我们同时说明了综合数据示例和实际数据示例。

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