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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >An efficient vector elastic reverse time migration method in the hybrid time and frequency domain for anisotropic media
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An efficient vector elastic reverse time migration method in the hybrid time and frequency domain for anisotropic media

机译:各向异性媒体混合时间和频域中有效的矢量弹性反向时间迁移方法

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摘要

Vector elastic reverse time migration (ERTM) produces subsurface elastic images with correct polarities using multicomponent seismic data. However, the decomposition of elastic wavefields into vector P- and S-wavefields is computationally expensive, particularly in heterogeneous and complex anisotropic media. We have developed a computationally efficient vector ERTM method in the hybrid time and frequency domain by combining three existing techniques. Rather than decomposing elastic wavefields into vector qP- and qS-wavefields during time-domain wavefield propagation, we conduct the wavefield decomposition in the frequency domain for several selected frequencies. In general, the number of selected frequencies needed for migration imaging is much smaller than the number of time steps during forward and backward wavefield propagation, leading to greatly reduced computational costs associated with the qP-/qS-wavefield vector separation in complex heterogeneous anisotropic media. We further combine an implicit directional wavefield separation into the vector ERTM to enhance the image quality. The numerical results demonstrate that our method produces high-quality elastic-wave migration images with notably reduced computational costs compared to the conventional vector ERTM method.
机译:向量弹性相反时间迁移(ERTM)使用多组分地震数据产生具有正确极性的地下弹性图像。然而,将弹性波场分解成载体p-和S-波场的计算昂贵,特别是在异质和复杂的各向异性介质中。通过组合三种现有技术,我们在混合时间和频域中开发了一种在混合时间和频域中的计算有效的向量ERTM方法。在时域波场传播期间,而不是将弹性波浪分解为向量QP和QS-Wavefield,而是在频域中进行多个选定频率的波场分解。通常,迁移成像所需的所选频率的数量远小于前向和向后波场传播期间的时间次数,从而大大降低了与复杂异构各向异性媒体中的QP-/ QS-Wavefield矢量分离相关的计算成本。我们进一步将隐式定向波场分离分离到向量ERTM中以增强图像质量。数值结果表明,与传统的向量ERTM方法相比,我们的方法产生了具有显着降低的计算成本的高质量弹性波迁移图像。

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