Seismic inversion using complex spherical-wave reflection coefficient at different offsets and frequencies

Author:

Cheng Guangsen1ORCID,Yin Xingyao1ORCID,Zong Zhaoyun2ORCID,Xia Tongxing3,Wang Jianli3,Liu Haojie3

Affiliation:

1. China University of Petroleum (East China), School of Geosciences, Qingdao 266580, China.

2. China University of Petroleum (East China), School of Geosciences, Qingdao 266580, China. (corresponding author)

3. China National Offshore Oil Corporation (CNOOC), China Limited Tianjin Branch, Tianjin 300459, China.

Abstract

Compared with the plane-wave reflection coefficient, the spherical-wave reflection coefficient (SRC) can more accurately describe the reflected wavefield excited by a point source, especially in the case of low seismic frequency and short travel distance. However, unlike the widely used plane-wave amplitude-variation-with-offset/frequency (AVO/AVF) inversion, the practical application of spherical-wave AVO/AVF inversion in multilayer elastic media is still in the exploratory stage. One of the difficulties is how to fully use the amplitude and phase information of the complex-valued SRC and the spherical-wave response property of each frequency component to obtain the spherical-wave synthetic seismogram in multilayer elastic media. In view of this, we have developed a complex convolution model considering the amplitude and phase information of an SRC to obtain the complex synthetic seismogram of a certain frequency component. A simple harmonic superposition method is further developed. By superposing the complex synthetic seismograms of different frequency components, the synthetic seismogram of the full-frequency band can be obtained. In addition, a novel three-parameter SRC in terms of P- and S-wave moduli and density is derived. Based on the SRC and complex seismic traces with different offsets (or incidence angles) and frequency components, an inversion approach of complex spherical-wave amplitude and phase variation with offset and frequency is proposed. A noisy synthetic data example verifies the robustness of our complex spherical-wave inversion approach. Field data examples indicate that the P- and S-wave moduli estimated by the complex spherical-wave inversion approach can reasonably match the filtered well-logging data. Considering spherical waves rather than plane waves can improve the accuracy of seismic inversion results.

Funder

National Nature Science Foundation of China

The scientific research project of CNOOC

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

Reference31 articles.

1. Analytical wavefront curvature correction to plane-wave reflection coefficients for a weak-contrast interface

2. Effective reflection coefficients for curved interfaces in transversely isotropic media

3. Bird, C., 2012, Amplitude-variation-with frequency (AVF) analysis of seismic data over anelastic targets: M.S. thesis, University of Calgary.

4. Bayesian linearized AVO inversion

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