--> Abstract: Subsalt Imaging and 4D Reservoir Monitoring Evaluation of Tahiti Field, Gulf of Mexico, by Catherine Thacher, Dimitri Bevc, Ellen Clark, Kurt Nihei, Bernard Regel, Joe Stefani, and Larry Sydora; #90167 (2013)
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Previous HitSubsaltNext Hit Previous HitImagingNext Hit and 4D Reservoir Monitoring Evaluation of Tahiti Field, Previous HitGulfNext Hit of Previous HitMexicoNext Hit

Catherine Thacher, Dimitri Bevc, Ellen Clark, Kurt Nihei, Bernard Regel, Joe Stefani, and Larry Sydora
[email protected]

Previous HitSubsaltNext Hit reservoirs are usually not considered candidates for 4D seismic monitoring. The argument has been 'If I can't image the reservoir with seismic, how can I hope to see production effects with seismic?' While 4D is a proven industry technology for reservoir monitoring of water floods, its use in the Previous HitsubsaltNext Hit environment is less prolific. As a cost effective feasibility test of 4D in Previous HitsubsaltNext Hit reservoirs, we create a 2D visco-elastic anisotropic earth model of the Previous HitGulfNext Hit of Previous HitMexicoNext Hit Tahiti field. The model is constructed from water bottom to basement using rock properties derived from Tahiti field well log and cores in addition to general Previous HitGulfNext Hit of Previous HitMexicoNext Hit trends. Incorporating the Tahiti reservoir prediction simulation model, we also create a time-lapse version of this same 2D model. Using rock physics relations, we transform the earth/reservoir properties (porosity, water saturation, pore pressure) into elastic properties (Vp, Vs, density). Rooting the model in reservoir properties and rock physics helps ensure an internally consistent set of elastic parameters. We then create 2D synthetic data that are representative of both static and dynamic earth properties. Finally, we process these raw synthetic data in a 4D workflow that includes data conditioning, blind velocity analysis, depth migration, and 4D seismic Previous HitimagingNext Hit. The Tahiti 2D/4D models reveal that production effects in these Previous HitsubsaltTop reservoirs are detected on 4D seismic data. We describe the model building workflow, the products of velocity analysis, and the resulting 4D synthetic seismic images.

AAPG Search and Discovery Article #90167©2013 GCAGS and GCSSEPM 63rd Annual Convention, New Orleans, Louisiana, October 6-8, 2013