1887
Volume 41, Issue 1
  • ISSN: 0812-3985
  • E-ISSN: 1834-7533

Abstract

This study utilises repeated numerical tests to understand the effects of variable near-surface conditions on time-lapse seismic surveys. The numerical tests were aimed at reproducing the significant scattering observed in field experiments conducted at the Naylor site in the Otway Basin for the purpose of CO sequestration. In particular, the variation of elastic properties of both the top soil and the deeper rugose clay/limestone interface as a function of varying water saturation were investigated. Such tests simulate the measurements conducted in dry and wet seasons and to evaluate the contribution of these seasonal variations to seismic measurements in terms of non-repeatability. Full elastic pre-stack modelling experiments were carried out to quantify these effects and evaluate their individual contributions. The results show that the relatively simple scattering effects of the corrugated near-surface clay/limestone interface can have a profound effect on time-lapse surveys. The experiments also show that the changes in top soil saturation could potentially affect seismic signature even more than the corrugated deeper surface.

Overall agreement between numerically predicted and in situ measured normalised root-mean-square (NRMS) differences between repeated (time-lapse) 2D seismic surveys warrant further investigation. Future field studies will include measurements of the elastic properties of the weathered zone through the use of ‘micro Vertical Seismic Profiling (VSP)’ arrays and very dense refraction surveys. The results of this work may impact on other areas not associated with CO sequestration, such as imaging oil production over areas where producing fields suffer from a karstic topography, such as in the Middle East and Australia.

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/content/journals/10.1071/EG09010
2010-03-01
2026-01-19
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References

  1. Al-Jabri Y. , and Urosevic M. 2008, The applicability of vibroseis sources for the land seismic time-lapse surveys; CO2 sequestration field: CO2CRC Otway Project, Victoria, Australia: Vibroseis Workshop 2008, Prague, Czech Republic, 13–15 October 2008.
  2. Al-Jabri Y. , Urosevic M. , Evans B. , and Sherlock D. 2008 a, Understanding seismic repeatability in the presence of irregular near-surface conditions (karst): CO2CRC Otway Project, Victoria, Australia: SEG & EAGE Summer Research Workshop 2008, Vancouver, Canada, 7–12 September 2008.
  3. Al-Jabri Y. , Urosevic M. , and Kepic A. 2008 b, The effects of the near-surface weathered zone on the CO2 time-lapse monitoring program at Naylor-1, CO2CRC Otway Project, Victoria, Australia: CO2CRC Symposium 2008: Queenstown, New Zealand, 1–5 December 2008.
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  6. Urosevic M. , Sherlock D. , Kepic A. , Nakanishi S. , and Tcherkashnev S. K., 2008, “Time lapse VSP program for Otway basin CO2 sequestration pilot project”: 70th EAGE Conference & Exhibition – Rome, Italy.
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  • Article Type: Research Article
Keyword(s): time-lapse/near-surface conditions.

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