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Field Evaluation of Two Impulsive Downhole Seismic Sources in Crosswell and Reverse VSP Geometries and High-Resolution Characterization of Near-Surface Texas Gulf Coast Sediments
Unsupervised machine learning for time-lapse seismic studies and reservoir monitoring
Velocity model building for single-offset VSP data via deformable-layer tomography: A Texas salt dome example
Which seismic attributes are best for subtle fault detection?
Unsupervised machine learning using 3D seismic data applied to reservoir evaluation and rock type identification
The effect of geologic structure on fracture characterization using azimuthal vertical seismic profiles
Predicting reservoir quality in the Bakken Formation, North Dakota, using petrophysics and 3C seismic data
Elastic properties of rock salt: Laboratory measurements and Gulf of Mexico well-log analysis
3D-printed rock models: Elastic properties and the effects of penny-shaped inclusions with fluid substitution
Marine guided waves: Subbottom property estimation and filtering using physical modeling data
Near-surface geophysical investigation of the 2010 Haiti earthquake epicentral area: Léogâne, Haiti
Vertical seismic profile migration velocity analysis via residual moveout in receiver domain common image gathers
Imaging lateral heterogeneity using reflected surface waves
Searching for blind faults: The Haiti subsurface imaging project
Abstract Assessing residual moveout after migration is a useful way to undertake velocity analysis in surface seismic data. In this paper, we apply this concept to walk-away vertical seismic profile (VSP) data. Because of the non-symmetric source and receiver geometry, it is hard to detect the depth residual moveout in conventional common image gathers (CIGs) for VSP data. In this case, we changed the horizontal axis from horizontal offsets from the common image point (CIP) to be receiver depths. We derive a residual moveout function for migrated common receiver gathers assuming a constant velocity model having a single horizontal reflector. We then extend this tool to a layered medium using a layer stripping, V rms approach, which allows us to obtain interval velocities of the model layers. It has better results than the classic depth residual moveout. This is further applied to more complex, laterally varying velocity models with good results. This is valid since with VSP data we are generally imaging within a small (compared to surface seismic) distance away from the borehole and our analysis method allows us to estimate velocity perturbations away from the trial migration velocity model.