Prism Seismic would like to invite you (and your project dataset brought in an external USB external disk) to visit our booth #1571 to test drive our seismically driven reservoir characterization software CRYSTAL and REFRACT.
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After signing the necessary confidentiality
agreement, we
will gladly load your data for you and run any of the processes listed
below free of charges. This service will be provided on first come first
serve basis.
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Post Stack Resolution Enhancement:
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We want you to experience what our post-stack seismic resolution enhancement can do to increase the resolution of your seismic data. Prism Seismic resolution enhancement boosts higher seismic frequencies, which allows you to better image your faults and thin seismic events. Resolution enhancement does not add new frequencies while selectively boosting the existing high frequencies.
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Volumetric Curvature:
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The era of coherency-type attributes for fault identification is quickly becoming obsolete with the arrival of quick and detailed volumetric curvature in CRYSTAL. Volumetric curvature attributes provide 3-dimensional insight into dip direction, flexure patterns and deformation shaping. During SEG, Prism Seismic will generate volumetric curvature attributes for your dataset and provide maximum curvature, most-positive-curvature, and most-negative-curvature attributes.
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Building Complex Structural Frameworks
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If you think building a structural framework model with over 100 faults is hard or prohibitively time consuming, please bring your horizons, faults, and seismic data to our booth and we will show how easily and quickly this can be done…. on a laptop! All that is needed are two horizons available as (X,Y,time) and the faults surfaces from your interpretation software in the format (X,Y,time). Using the structural inputs, Prism Seismic staff will build a sealing framework, which will then be used to build a geocellular grid with the desired dimensions and layering. The final geocellular grid will have rectangular cells and vertical columns and will be exported as a binary Eclipse grid.
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Wavelet Extraction for a Highly Deviated Well
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If you are drilling highly deviated wells, CRYSTAL allows you to extract a wavelet and perform a welltie for any highly deviated well. Inclusion of highly-deviated wells in reservoir modeling allows the user improved estimation of the wavelet and greater constraint of seismic events for seismic inversion. The data needed to extract the wavelet for your deviated well include: 1) a small seismic cube around the deviated well, 2) the well location and its KB, 3) the well deviation, and 4) the sonic log. The resulting extracted wavelet will be provided.
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Spectral Imaging and High Resolution Inversion
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CRYSTAL includes a unique suite of spectral imaging attributes and several high-resolution inversion techniques that unveil previously unseen reservoir details. For spectral imaging, only a seismic cube is needed and up to 5 desired attributes will be provided free of charge. For a high-resolution inversion, in addition to the seismic cube, please bring well data including well locations, KB, markers, and sonic logs and two seismic horizons bounding the reservoir. Prism Seismic will provide an impedance cube at 1ms sample rate.
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Fracture Modeling
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If natural fractures are causing you headaches in your reservoir, you must test-drive REFRACT, the only fracture modeling software and technology proven with the drill bit. For the last 5 years a select group of companies have been benefiting from the Continuous Fracture Modeling (CFM) technology provided by Prism. This technology can use any type of fracture indicator at the wells and a list of drivers to accurately predict the distribution of the fractures in 3D. If you would like to experience REFRACT at SEG, please bring 1) a 3D geocellular grid in binary or ascii Eclipse format 2) at least one geologic driver on the same Eclipse grid preferably a lithology indicator such as Vshale 3) at least one seismic attribute preferably an impedance or a spectral imaging attribute on the same Eclipse grid, 4) at least one or two wells with a fracture indicator available at different depths provided as (MD, FI) along the well bore, 5) Well locations and KB, 6) interpreted well test data which must include the intervals tested. The deliverable will include 3 realizations of the 3D distribution of the fractures provided both in terms of permeability and as the original fracture indicator made available at the wells. These 6 files will be provided in Eclipse format on the same geocellular grid.
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Please bring your data on an external disk.
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We look forward to meeting you in Las Vegas!
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