Seismic Reverse Time Migration Using A New Wave-Field Extrapolator and a New Imaging Condition

被引:0
作者
Farzad Moradpouri
Ali Moradzadeh
Reynam C. Pestana
Mehrdad Soleimani Monfared
机构
[1] Shahrood University of Technology,Faculty of Mining Petroleum and Geophysics
[2] University of Tehran,School of Mining Engineering, College of Engineering
[3] Federal University of Bahia (UFBA),Center for Research in Geophysics and Geology (CPGG)
来源
Acta Geophysica | 2016年 / 64卷
关键词
RTM; Leapfrog-Rapid Expansion Method; Poynting vector; Imaging condition; artifactss;
D O I
暂无
中图分类号
学科分类号
摘要
Prestack reverse time migration (RTM), as a two way wave-field extrapolation method, can image steeply dipping structures without any dip limitation at the expense of potential increase in imaging artifacts. In this paper, an efficient symplectic scheme, called Leapfrog-Rapid Expansion Method (L-REM), is first introduced to extrapolate the wavefield and its derivative in the same time step with high accuracy and free numerical dispersion using a Ricker wavelet of a maximum frequency of 25 Hz. Afterwards, in order to suppress the artifacts as a characteristic of RTM, a new imaging condition based on Poynting vector and a type of weighting function is presented. The capability of the proposed new imaging condition is then tested on synthetic data. The obtained results indicate that the proposed imaging condition is able to suppress the RTM artifacts effectively. They also show the ability of the proposed approach for improving the amplitude and compensate for illumination.
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页码:1673 / 1690
页数:17
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