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Migration velocity modeling based on common reflection surface gather
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作者 李振春 姚云霞 +1 位作者 马在田 王华忠 《Acta Seismologica Sinica(English Edition)》 CSCD 2003年第4期430-440,共11页
The common-reflection-surface (CRS) stacking is a new seismic imaging method, which only depends on seismic three parameters and near-surface velocity instead of macro-velocity model. According to optimized three para... The common-reflection-surface (CRS) stacking is a new seismic imaging method, which only depends on seismic three parameters and near-surface velocity instead of macro-velocity model. According to optimized three parameters obtained by CRS stacking, we derived an analytical relationship between three parameters and migration velocity field, and put forward CRS gather migration velocity modeling method, which realize velocity estimation by optimizing three parameters in CRS gather. The test of a sag model proved that this method is more effective and adaptable for velocity modeling of a complex geological body, and the accuracy of velocity analysis depends on the precision of optimized three parameters. 展开更多
关键词 crs stacking crs gather migration velocity modeling optimized three parameters layer stripping
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Common reflection surface stack using dip decomposition for rugged surface topography 被引量:6
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作者 Sun Xiaodong Li Zhenchun Teng Houhua 《Applied Geophysics》 SCIE CSCD 2007年第1期45-50,共6页
We present an extension of the Common Reflection Surface (CRS) stack that provides support for an arbitrary top surface topography. CRS stacking can be applied to the original prestack data without the need for any ... We present an extension of the Common Reflection Surface (CRS) stack that provides support for an arbitrary top surface topography. CRS stacking can be applied to the original prestack data without the need for any elevation statics. The CRS-stacked zero- offset section can be corrected (redatumed) to a given planar level by kinematic wave field attributes. The seismic processing results indicate that the CRS stacked section for rugged surface topography is better than the conventional stacked section for S/N ratio and better continuity of reflection events. Considering the multiple paths of zero-offset rays, the method deals with reflection information coming from different dips and performs the stack using the method of dip decomposition, which improves the kinematic and dynamic character of CRS stacked sections. 展开更多
关键词 static correction crs stack kinematic parameters REDATUMING dip decomposition.
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