各向异性
横观各向同性
地质学
垂直地震剖面
振幅与偏移
地震各向异性
各向同性
数据处理
地震波
反演(地质)
储层建模
地震反演
方位角
地震学
振幅
正常时差
地球物理学
光学
物理
计算机科学
岩土工程
操作系统
构造学
作者
Ilya Tsvankin,James Gaiser,Vladimir Grechka,Mirko van der Baan,Leon Thomsen
出处
期刊:Geophysics
[Society of Exploration Geophysicists]
日期:2010-09-01
卷期号:75 (5): 75A15-75A29
被引量:210
摘要
Recent advances in parameter estimation and seismic processing have allowed incorporation of anisotropic models into a wide range of seismic methods. In particular, vertical and tilted transverse isotropy are currently treated as an integral part of velocity fields employed in prestack depth migration algorithms, especially those based on the wave equation. We briefly review the state of the art in modeling, processing, and inversion of seismic data for anisotropic media. Topics include optimal parameterization, body-wave modeling methods, P-wave velocity analysis and imaging, processing in the [Formula: see text] domain, anisotropy estimation from vertical-seismic-profiling (VSP) surveys, moveout inversion of wide-azimuth data, amplitude-variation-with-offset (AVO) analysis, processing and applications of shear and mode-converted waves, and fracture characterization. When outlining future trends in anisotropy studies, we emphasize that continued progress in data-acquisition technology is likely to spur transition from transverse isotropy to lower anisotropic symmetries (e.g., orthorhombic). Further development of inversion and processing methods for such realistic anisotropic models should facilitate effective application of anisotropy parameters in lithology discrimination, fracture detection, and time-lapse seismology.
科研通智能强力驱动
Strongly Powered by AbleSci AI