Analytic calculation of phase and group velocities of P-waves in orthorhombic media

Author:

Hao Qi1,Stovas Alexey1

Affiliation:

1. Norwegian University of Science and Technology, Department of Petroleum Engineering and Applied Geophysics, Trondheim, Norway..

Abstract

We have developed an approximate method to calculate the P-wave phase and group velocities for orthorhombic media. Two forms of analytic approximations for P-wave velocities in orthorhombic media were built by analogy with the five-parameter moveout approximation and the four-parameter velocity approximation for transversely isotropic media, respectively. They are called the generalized moveout approximation (GMA)-type approximation and the Fomel approximation, respectively. We have developed approximations for elastic and acoustic orthorhombic media. We have characterized the elastic orthorhombic media in Voigt notation, and we can describe the acoustic orthorhombic media by introducing the modified Alkhalifah’s notation. Our numerical evaluations indicate that the GMA-type and Fomel approximations are accurate for elastic and acoustic orthorhombic media with strong anisotropy, and the GMA-type approximation is comparable with the approximation recently proposed by Sripanich and Fomel. Potential applications of the proposed approximations include forward modeling and migration based on the dispersion relation and the forward traveltime calculation for seismic tomography.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

Reference46 articles.

1. Al-Dajani, A., and M. N. Toksoz, 2002, Nonhyperbolic reflection moveout for orthorhombic media: MIT Earth Resources Laboratory Industry Consortia annual report, http://hdl.handle.net/1721.1/67847, accessed 21 December 2011.

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5. Possible forms of seismic anisotropy of the uppermost mantle under oceans

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