Representation of discontinuous seismic velocity fields by sigmoidal functions for ray tracing and traveltime modelling

Author:

Oliveira Saulo P1ORCID,Azevedo Juarez S2,Figueiró Wilson M3,Guimarães Rodrigo A4,Silva Winicius J4,de Oliveira Andressa1

Affiliation:

1. Department of Mathematics, Federal University of Paraná, Curitiba-PR 81531-980, Brazil

2. Institute of Science, Technology, and Innovation, Federal University of Bahia, Camaçari-BA 42802-721, Brazil

3. Department of Geophysics, Federal University of Bahia, Salvador-BA 40170-115, Brazil

4. Department of Geology, Federal University of Paraná, Curitiba-PR 81531-980, Brazil

Abstract

SUMMARY Wave-modelling methods based on asymptotic ray theory have a lower computational cost than full wave-equation methods but require a smooth velocity field, though discontinuities may be handled by imposing interface conditions between adjacent blocks. We propose to approximate discontinuous velocity fields with model parametrizations based on smooth, rapidly varying functions known as sigmoidal functions. We have implemented the proposed technique on Cartesian grids using the wavelet theory formalism. Numerical experiments with 2-D and 3-D initial-value and two-point ray tracing in heterogeneous media show that the ray paths and traveltimes produced with the sigmoidal representation are consistent with the results produced by conventional ray tracing in block structures, broadening the scope of classical algorithms based on smooth velocity fields.

Funder

CNPq

MCT

ICTP

Publisher

Oxford University Press (OUP)

Subject

Geochemistry and Petrology,Geophysics

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