Migration velocity analysis using residual diffraction moveout: A real-data example

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Abstract

Unfocused seismic diffraction events carry direct information about errors in the migration-velocity model. The residual-diffraction-moveout (RDM) migration-velocity-analysis (MVA) method is a recent technique that extracts this information by means of adjusting ellipses or hyperbolas to uncollapsed migrated diffractions. In this paper, we apply this method, which has been tested so far only on synthetic data, to a real data set from the Viking Graben. After application of a plane-wave-destruction (PWD) filter to attenuate the reflected energy, the diffractions in the real data become interpretable and can be used for the RDM method. Our analysis demonstrates that the reflections need not be completely removed for this purpose. Beyond the need to identify and select diffraction events in post-stack migrated sections in the depth domain, the method has a very low computational cost and processing time. To reach an acceptable velocity model of comparable quality as one obtained with common-midpoint (CMP) processing, only two iterations were necessary.

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Gonzalez, J. A. C., De Figueiredo, J. J. S., Coimbra, T. A., Schleicher, J., & Novais, A. (2016). Migration velocity analysis using residual diffraction moveout: A real-data example. Journal of Geophysics and Engineering, 13(4), 622–633. https://doi.org/10.1088/1742-2132/13/4/622

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