An efficient ray-tracing method and its application to Gaussian beam migration in complex multilayered anisotropic media

Author:

Xu Qianru1,Mao Weijian2ORCID

Affiliation:

1. Institute of Geodesy and Geophysics, Chinese Academy of Sciences, Center for Computational and Exploration Geophysics, State Key Laboratory of Geodesy and Earth’s Dynamics, Wuhan, China and University of Chinese Academy of Sciences, Beijing, China..

2. University of Chinese Academy of Sciences, Beijing, China..

Abstract

We have developed a fast ray-tracing method for multiple layered inhomogeneous anisotropic media, based on the generalized Snell’s law. Realistic geologic structures continuously varying with embedded discontinuities are parameterized by adopting cubic B-splines with nonuniformly spaced nodes. Because the anisotropic characteristic is often closely related to the interface configuration, this model parameterization scheme containing the natural inclination of the corresponding layer is particularly suitable for tilted transverse isotropic models whose symmetry axis is generally perpendicular to the direction of the layers. With this model parameterization, the first- and second-order spatial derivatives of the velocity within the interfaces can be effectively obtained, which facilitates the amplitude computation in dynamic ray tracing. By using complex initial conditions for the dynamic ray system and taking the multipath effect into consideration, our method is applicable to Gaussian beam migration. Numerical experiments of our method have been used to verify its effectiveness, practicability, and efficiency in memory storage and computation.

Funder

State Key Research Development Program of China

National Science Foundation of China

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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