2D anisotropic multicomponent Gaussian-beam migration under complex surface conditions

Author:

Han Jianguang1ORCID,Lü Qingtian1,Gu Bingluo2ORCID,Yan Jiayong1ORCID,Zhang Hao3

Affiliation:

1. Chinese Academy of Geological Sciences, Beijing 100037, China.(corresponding author); .

2. China University of Petroleum, School of Geoscience, Qingdao 266580, China..

3. Institute of Geomechanics, Chinese Academy of Geological Sciences, Beijing 100081, China..

Abstract

Elastic-wave migration in anisotropic media is a vital challenge, particularly for areas with irregular topography. Gaussian-beam migration (GBM) is an accurate and flexible depth migration technique, which is adaptable for imaging complex surface areas. It retains the dynamic features of the wavefield and overcomes the multivalued traveltimes and caustic problems of Kirchhoff migration. We have extended the GBM method to work for 2D anisotropic multicomponent migration under complex surface conditions. We use Gaussian beams to calculate the wavefield from irregular topography, and we use two schemes to derive the down-continued recorded wavefields. One is based on the local slant stack as in classic GBM, in which the PP- and PS-wave seismic records within the local region are directly decomposed into local plane-wave components from irregular topography. The other scheme does not perform the local slant stack. The Green’s function is calculated with a Gaussian beam summation emitted from the receiver point at the irregular surface. Using the crosscorrelation imaging condition and combining with the 2D anisotropic ray-tracing algorithm, we develop two 2D anisotropic multicomponent Gaussian-beam prestack depth migration (GB-PSDM) methods, i.e., using the slant stack and nonslant stack, for irregular topography. Numerical tests demonstrate that our anisotropic multicomponent GB-PSDM can accurately image subsurface structures under complex topography conditions.

Funder

National Key R&D Program of China

National Natural Science Foundation of China

CAGS Research Fund

China Geological Survey Project

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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