摘要
介质垂向非均匀性和内在各向异性都会导致反射时距曲线偏离双曲形状。基于传统双曲时差方程的时间域成像方法不能准确归位远偏移距或大入射角地震波能量。将已有非双曲时差方程总结归纳为级数展开逼近、时移双曲近似、反椭圆近似和正交多项式逼近4类,面向Kirchhoff叠前时间偏移推导了级数展开四阶逼近、时移双曲近似和反椭圆近似的双平方根时差方程。数值试验结果表明,反椭圆近似在垂向变化横向各向同性(VTI)介质中有很高的精度,它在各向异性介质时间域成像方面有大的应用潜力。
Vertical heterogeneity and intrinsic anisotropy will result in deviation of the time-distance curve from hyperbolic shape.Time imaging based on normal hyperbolic moveout equation fails to focus the reflection and diffraction of far offsets or large angles.In this paper,the existed non-hyperbolic NMO equations were classified into four types,namely,forth-order approximation based on series expanding.shifted hyperbolic approximation,anelliptic approximation and orthogonally polynomial approxima-tion.Then the forward three NMO equations were extended to their double-square-root counterparts to implement Kirchhoff presatck lime migration.Migrated sections and common-image gathers on a theoretical model demonstrate their difference in accuracy.The numerical results show that anelliptic approximation has great potential for time imaging in anisotropic medium.
出处
《油气地质与采收率》
CAS
CSCD
北大核心
2010年第1期57-61,共5页
Petroleum Geology and Recovery Efficiency
关键词
横向各向同性介质
叠前时间偏移
非双曲时差
双平方根时差方程
反椭圆近似
vertical transversely isotropic media
prestack time migration
non-hyperbolic moveout
double-square-root moveout equation:anelliptic approximation