Target-oriented wave-equation inversion

Author:

Valenciano Alejandro A.12,Biondi Biondo12,Guitton Antoine12

Affiliation:

1. Stanford Exploration Project, Mitchell Building, Department of Geophysics, Stanford University, Stanford, California 94305-2215.

2. 3DGeo Development, Inc., 4633 Old Ironsides Drive, Suite 401, Santa Clara, California 95054-1807.

Abstract

A target-oriented strategy can be applied to estimate a wave-equation least-squares inverse (LSI) image. By explicitly computing the wave-equation Hessian, the LSI image is obtained as the solution of a nonstationary least-squares inverse filtering problem. The rows of the Hessian are the nonstationary filters containing information about the acquisition geometry, the velocity model, and the band-limited characteristics of the seismic data. By exploiting the sparsity and the structure of the Hessian matrix, a large number of iterations, necessary to achieve convergence, can be computed cheaply. The results on a structurally complex model show the improvements of the LSI image versus the migrated image.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

Reference15 articles.

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