Greater Castberg, Barents Sea
Greater Castberg TopSeis™ data delivers enhanced reservoir imaging in the Barents Sea, with new data that covers the Johan Castberg field and existing and newly awarded licenses in addition to open acreage. The play types vary in age from Devonian basement to Paleogene. Acquired in 2019 in cooperation with TGS, data has been processed using the latest velocity modeling and imaging technology, including time-lag Q-full-waveform inversion (TL-QFWI). This unique TopSeis solution combines an innovative source-over-spread configuration with Viridien’s advanced imaging technology and delivers improved images in the complex Barents Sea environment.
Highlights
- 5,168 square kilometers of multi-client PSDM data (available now)
- TopSeis configuration with five widespread sources deployed above the spread
- Additional source on the streamer vessel to provide long-offset data for FWI and deep imaging
- Superior reservoir imaging with rich near offsets, high trace density and low noise
- Time-lag Q-full-waveform inversion (TL-QFWI)
- Unique, detailed velocity model and well calibration
- Enhanced reservoir characterization with high-quality AVO information
- Verification of AVO compliance at key processing stages
- One-stop data set providing excellent delineation of targets from shallow to intermediate depths
Advanced Imaging with TL-QFWI
The slider image shows the final Kirchhoff PSDM stack blended with the time-lag Q-FWI velocity model along a seismic line from the Bjørnøyrenna fault complex, passing through three discoveries: Skavl (left), Skrugard (centre left) and Nunatak (right). The Skavl and Skrugard discoveries were made in the early-to-middle Jurassic deposits while the Nunatak reservoir is of Early Cretaceous age.
The TL-QFWI model shows a high level of geological detail, including some of the fluid contacts in the reservoirs.
Final Kirchhoff-PSDM stack blended with TL-QFWI velocity model (time domain)
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