Angle-domain common-image gather extraction based on elastic reverse time migration

被引:0
|
作者
Xu W. [1 ,2 ,3 ]
Zhu C. [1 ,2 ,3 ]
Wei Z. [1 ,2 ,3 ]
Zhang X. [4 ]
Du Q. [5 ]
机构
[1] State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development, Beijing
[2] SINOPEC Key Laboratory of Seismic Elastic Wave Technology, Beijing
[3] SINOPEC Petroleum Exploration and Production Research Institute, Beijing
[4] Institute of Oceanographic Instrumentation, Qilu University of Technology (Shandong Academy of Sciences), Qingdao
[5] Key Laboratory of Deep Oil and Gas, China University of Petroleum (East China), Qingdao
关键词
Angle-domain common-image gather (ADCIG); Decoupled wave equation; Poynting vector; Pseudo-S-wave stress;
D O I
10.13810/j.cnki.issn.1000-7210.2022.04.013
中图分类号
学科分类号
摘要
Due to the coupling effect of P- and S-waves in the medium, multi-wave angle-domain common-image gathers (ADCIGs) encounter the problems such as energy crosstalk and low wavenumber noise in multicomponent seismic exploration. To solve the stress crosstalk problem in the construction of the Poynting vector of S-waves, this study uses the decoupled wave equation and pseudo-S-wave stress construction method to decouple the particle vibration velocity and stress, and the Poynting vectors of the P- and S-waves are constructed without energy crosstalk. Then, the PP-wave and PS-wave reflected angles are extracted given the Poynting vectors. On this basis, this paper proposes the PP-wave and PS-wave ADCIG extraction method based on the elastic reverse time migration (ERTM). Considering the low wavenumber noise in PP-wave ADCIGs, an angle attenuation superposition strategy for ADCIGs is proposed to improve the migration imaging accuracy. The model test verifies the correctness of the method. © 2022, Editorial Department OIL GEOPHYSICAL PROSPECTING. All right reserved.
引用
收藏
页码:870 / 878
页数:8
相关论文
共 29 条
  • [11] NGUYEN B D, MCMECHAN G A., Excitation amplitude imaging condition for prestack reverse-time migration, Geophysics, 78, 1, pp. S37-S46, (2013)
  • [12] DUAN Y T, SAVA P., Scalar imaging condition for elastic reverse time migration, Geophysics, 80, 4, pp. S127-S136, (2015)
  • [13] ZHANG Q S, MCMECHAN G A., Direct vector-field method to obtain angle-domain common-image gathers from isotropic acoustic and elastic reverse time migration, Geophysics, 76, 5, pp. WB135-WB149, (2011)
  • [14] MA Detang, ZHU Guangming, Numerical modeling of P-wave and S-wave separation in elastic wavefield, Oil Geophysical Prospecting, 38, 5, pp. 482-486, (2003)
  • [15] LI Zhenchun, ZHANG Hua, LIU Qingmin, Et al., Numeric simulation of elastic wavefield separation by staggering grid high-order finite-difference algorithm, Oil Geophysical Prospecting, 42, 5, pp. 510-515, (2007)
  • [16] DU Q Z, GUO C F, ZHAO Q, Et al., Vector-based elastic reverse time migration based on scalar imaging condition, Geophysics, 82, 2, pp. S111-S127, (2017)
  • [17] DU Q Z, ZHANG X Y, GUO C F, Et al., An elastic reverse time migration method based on the S-wave quasi-tensor, Extended Abstracts of 80th EAGE Conference and Exhibition, (2018)
  • [18] TANG C, MCMECHAN G A., Multidirectional-vector-based elastic reverse time migration and angle-domain common-image gathers with approximate wavefield decomposition of P-and S-waves, Geophysics, 83, 1, pp. S57-S79, (2018)
  • [19] MU Xinru, HUANG Jianping, LI Zhenchun, Et al., Reverse time migration of decoupled qP-and qSV-waves in TTI media with the optimal quadratic approximation, Oil Geophysical Prospecting, 54, 6, pp. 1280-1292, (2019)
  • [20] XU S, CHAURIS H, LAMBARE G, Et al., Common-angle migration: a strategy for imaging complex media, Geophysics, 66, 6, pp. 1877-1894, (2001)