Seismic traveltime inversion for transverse isotropy

Author:

Byun B. S.1,Corrigan D.1

Affiliation:

1. ARCO Oil and Gas Company, 2300 W. Plano Parkway, Plano, TX 75075

Abstract

Quantitative measurements of seismic anisotropy can provide a valuable clue to the lithology and degree of stratification in sedimentary rocks with hydrocarbon potential. We present a practical technique for obtaining anisotropy parameters (i.e., five stiffness coefficients A, C, F, L, and M) from seismic traveltime measurements for horizontally layered, transversely isotropic media. The technique is based on the construction of ray‐velocity surfaces in terms of five measurement parameters. An iterative model‐based optimization scheme is then used to invert the traveltime parameters for the five stiffness coefficients in a layer‐stripping mode. Both model and field experiments are performed to demonstrate the feasibility of the method. The model experiment shows that inversion errors (especially in stiffness coefficients A, F, and M) increase with increasing number of layers. Despite these errors, the proposed method does provide a quantitative measure of velocity anisotropy as additional information that cannot be obtained readily from conventional methods. A field VSP data example shows the correlation between the anisotropy parameters and lithology: Chalk and shale exhibited high degrees of anisotropy, and sands showed low degrees of anisotropy.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

Cited by 37 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A new approach to determine geomechanical parameters of Vertical Transverse Isotropic media using VSP data;Journal of Applied Geophysics;2014-12

2. Seismic Signatures and Analysis of Reflection Data in Anisotropic Media, Third edition;GEOPHYS REF;2012-01-01

3. References;Seismic Signatures and Analysis of Reflection Data in Anisotropic Media, Third edition;2012-01-01

4. NMO correction in anisotropic media using ray velocity;Geophysical Journal International;2009-12

5. AMTCLAB: A MATLAB®-based program for traveltime analysis and velocity tuning in 2D elliptical anisotropic media;Computers & Geosciences;2009-10

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