Seismic complex ray tracing in 2D/3D viscoelastic anisotropic media by a modified shortest-path method

Author:

Li Xing-Wang1ORCID,Zhou Bing2ORCID,Bai Chao-Ying3ORCID,Wu Jian-Lu2ORCID

Affiliation:

1. Chang’an University, School of Geology Engineering and Geomatics, Xi’an 710054, China..

2. Khalifa University of Science and Technology, Department of Earth Sciences, P.O. Box 2533, Abu Dhabi, UAE..

3. Chang’an University, School of Geology Engineering and Geomatics, Xi’an 710054, China and Chang’an University, Institute of Computational Geophysics, Xi’an 710054, China.(corresponding author).

Abstract

In a viscoelastic anisotropic medium, velocity anisotropy and wave energy attenuation occur and are often observed in seismic data applications. Numerical investigation of seismic wave propagation in complex viscoelastic anisotropic media is very helpful in understanding seismic data and reconstructing subsurface structures. Seismic ray tracing is an effective means to study the propagation characteristics of high-frequency seismic waves. Unfortunately, most seismic ray-tracing methods and traveltime tomographic inversion algorithms only deal with elastic media and ignore the effect of viscoelasticity on the seismic raypath. We have developed a method to find the complex ray velocity that gives the seismic ray speed and attenuation in an arbitrary viscoelastic anisotropic medium, and we incorporate them with the modified shortest-path method to determine the raypath and calculate the real and imaginary traveltime (wave energy attenuation) simultaneously. We determine that the complex ray-tracing method is applicable to arbitrary 2D/3D viscoelastic anisotropic media in a complex geologic model and the computational errors of the real and imaginary traveltime are less than 0.36% and 0.59%, respectively. The numerical examples verify that the new method is an effective and powerful tool for accomplishing seismic complex ray tracing in heterogeneous viscoelastic anisotropic media.

Funder

Fundamental Research Funds for the Central Universities, Chang’an University

Khalifa University of Science and Technology

National Natural Science Foundation of China

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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