1887
ASEG2013 - 23rd Geophysical Conference
  • ISSN: 2202-0586
  • E-ISSN:

Abstract

In January 2012, the storm clouds of Tropical Cyclone Iggy were gathering over the Timor Sea as acquisition of the 500 km2 Zeppelin 3D seismic survey began in the Vulcan sub-basin permits AC/P 50 and AC/P 51. Despite the high seas and the adoption of a conventional survey design, the Zeppelin 3D appears to have set a new benchmark for seismic data quality in the Vulcan sub- basin, which has traditionally been considered a ‘difficult data area’.

Reprocessing some of the overlapping legacy Onnia 3D seismic suggests that much of the imaging improvement stems from a multiple-suppression similar to that used recently in other ‘difficult’ Australian basins. The combination of shallow water demultiple, SRME and gap deconvolution followed by a stratigraphically-controlled velocity analysis appears to account for much of the improvement. Shooting in the (dominant) dip direction also appears to have helped although had 3D SRME been applied this might have been rendered less important.

Using the reprocessed Onnia 3D and the Zeppelin 3D, our seismic interpreters have been able to develop a detailed structural model which underpins the distribution of fault-bend fold related prospectivity. Enhanced resolution enables sequence stratigraphy to be delineated. A series of structures within 3 separate plays (Triassic, Jurassic and Cretaceous) define a significant increase in the assessed oil and gas volumetric potential thereby justifying the early investment in seismic.

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/content/journals/10.1071/ASEG2013ab387
2013-12-01
2026-01-19
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References

  1. Hung, B., Yang, K., Zhou, J. and Long Xia, Q., 2010, Shalow Water Demultiple: 21st ASEG Conference, Sydney, Australia, Expanded Abstracts.
/content/journals/10.1071/ASEG2013ab387
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  • Article Type: Research Article
Keyword(s): interpretation; multi-azimuth; multiples; seismic acquisition; Vulcan sub-basin
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