Time-domain incomplete Gauss-Newton full-waveform inversion of Gulf of Mexico data
Author(s) -
Abdullah AlTheyab,
Xin Wang,
Gerard T. Schuster
Publication year - 2013
Publication title -
king abdullah university of science and technology repository (king abdullah university of science and technology)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.1190/segam2013-1478.1
Subject(s) - inversion (geology) , gauss , waveform , time domain , geology , computer science , frequency domain , domain (mathematical analysis) , geodesy , seismology , telecommunications , physics , mathematics , mathematical analysis , radar , quantum mechanics , computer vision , tectonics
We apply the incomplete Gauss-Newton full-waveform inversion (TDIGN-FWI) to Gulf of Mexico (GOM) data in the space-time domain. In our application, iterative least-squares reverse-time migration (LSRTM) is used to estimate the model update at each non-linear iteration, and the number of LSRTM iterations is progressively increased after each non-linear iteration. With this method, model updating along deep reflection wavepaths are automatically enhanced, which in turn improves imaging below the reach of diving-waves. The forward and adjoint operators are implemented in the space-time domain to simultaneously invert the data over a range of frequencies. A multiscale approach is used where higher frequencies are down-weighted significantly at early iterations, and gradually included in the inversion.\ud\udSynthetic data results demonstrate the effectiveness of reconstructing both the high- and low-wavenumber features in the model without relying on diving waves in the inversion. Results with Gulf of Mexico field data show a significantly improved migration image in both the shallow and deep sections
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