Viscoacoustic modeling and imaging using low-rank approximation

Author:

Sun Junzhe1,Zhu Tieyuan1,Fomel Sergey1

Affiliation:

1. The University of Texas at Austin, John A. and Katherine G. Jackson School of Geosciences, Austin, Texas, USA..

Abstract

A constant-[Formula: see text] wave equation involving fractional Laplacians was recently introduced for viscoacoustic modeling and imaging. This fractional wave equation has a convenient mixed-domain space-wavenumber formulation, which involves the fractional-Laplacian operators with a spatially varying power. We have applied the low-rank approximation to the mixed-domain symbol, which enables a space-variable attenuation specified by the variable fractional power of the Laplacians. Using the proposed approximation scheme, we formulated the framework of the [Formula: see text]-compensated reverse time migration ([Formula: see text]-RTM) for attenuation compensation. Numerical examples using synthetic data demonstrated the improved accuracy of using low-rank wave extrapolation with a constant-[Formula: see text] fractional-Laplacian wave equation for seismic modeling and migration in attenuating media. Low-rank [Formula: see text]-RTM applied to viscoacoustic data is capable of producing images comparable in quality with those produced by conventional RTM from acoustic data.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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