首页> 外文期刊>Exploration Geophysics >Converted-wave guided imaging condition for elastic reverse time migration with wavefield separation
【24h】

Converted-wave guided imaging condition for elastic reverse time migration with wavefield separation

机译:带波场分离的弹性逆时偏移的转换波成像条件

获取原文
获取原文并翻译 | 示例
           

摘要

Elastic reverse time migration (ERTM), which is capable of using multicomponent seismic data, provides not only an improvement of the P-P image compared to the one derived from acoustic RTM, but also more opportunities to understand the subsurface through converted wave images (P-S, S-P, and S-S images). However, the polarity reversals in P-S and S-P images and cross-talk noises generated in S-P and S-S images degrade the converted wave images of ERTM. To overcome these problems, we derive a new P-S converted wave imaging condition for 2D ERTM based on wavefield separation techniques. The proposed imaging condition, called converted- wave guided (CWG) imaging condition, incorporates an extra term that represents the sign and wavelength of S-waves converted from source wavefields into the zero-lag cross-correlation imaging condition for P-S imaging. The extra term compensates for the polarity reversal of separated S-waves from receiver wavefields because the converted S-waves from source wavefields also have the change in polarity. In addition, since thisCWGimaging condition produces images where P- and S-waves from source wavefields and S-waves from receiver wavefields coincide, image resolution is enhanced without generating spurious events. Our approach is motivated by the specific feature of ERTM that generates converted waves at the reflection points (conventional imaging points) whenproper elastic models are used. Through a numerical experiment with a simple elastic model, wedemonstrate that the proposed CWG imaging condition successfully corrects the polarity reversal and provides higher image resolution. We also test our migration algorithm on a synthetic ocean bottom cable (OBC) dataset created using the Marmousi-II model. The P-S image obtained from CWG imaging condition shows continuous events and improved image resolution.
机译:能够使用多分量地震数据的弹性逆时偏移(ERTM)不仅比从声波RTM导出的图像改善了PP图像,而且为通过转换波图像(PS, SP和SS图片)。但是,P-S和S-P图像中的极性反转以及S-P和S-S图像中生成的串扰噪声会降低ERTM的转换波图像的质量。为了克服这些问题,我们基于波场分离技术推导了2D ERTM的P-S转换波成像新条件。提议的成像条件称为转换波引导(CWG)成像条件,其中包含一个额外的术语,表示从源波场转换为P-S成像的零滞后互相关成像条件的S波的符号和波长。多余项补偿了来自接收器波场的分离S波的极性反转,因为来自源波场的转换S波也具有极性变化。另外,由于这种CWG成像条件会产生来自源波场的P波和S波与来自接收器波场的S波重合的图像,因此可以提高图像分辨率,而不会产生虚假事件。我们的方法是由ERTM的特定功能所激发的,当使用适当的弹性模型时,该功能会在反射点(常规成像点)生成转换波。通过具有简单弹性模型的数值实验,证明所提出的CWG成像条件成功地纠正了极性反转并提供了更高的图像分辨率。我们还将在使用Marmousi-II模型创建的合成海底电缆(OBC)数据集上测试迁移算法。从CWG成像条件获得的P-S图像显示连续事件并提高了图像分辨率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号