1887
ASEG2010 - 21st Geophysical Conference
  • ISSN: 2202-0586
  • E-ISSN:

Abstract

Summary

A feature of the injection test site of Naylor Field is the near-surface karst topography. In such geological terrain, a change in water table level can influence the seismic response and cause changes in the seismic wave scattering pattern. High seismic repeatability is critical to the monitoring program of the Naylor Field because of the small time-lapse effect related to CO injection into a depleted gas reservoir (Naylor). To understand the effect of changing ground conditions on repeatability, we conducted so-called “micro-array” investigation of the near-surface layers at this site. Hence the aim of micro-array measurements was to determine the properties of the near surface layers during the wet and dry seasons. This could help us to understand and ultimately predict the seismic response and hence survey repeatability at a given site. Measurements of seismic response due to near surface property changes (seasonal) could help optimise the design of time lapse surveys which ultimately yields improved survey differencing. Measured elastic properties of the near surface are used to produce seismic response and predict repeatability as a function of the variable soil conditions. In this study we investigated the variation of elastic properties of both top soil and the deeper rugose clay-limestone interface as a function of water depth level. Such tests in fact simulate the measurements conducted in dry and wet seasons and help evaluate the effect of these seasonal variations on the seismic signature, which is then analysed in terms of non-repeatability. In this study, we use both micro-borehole (micro VSP) and micro-refraction arrays to analyse directional properties of the near-surface.

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/content/journals/10.1081/22020586.2010.12041987
2010-12-01
2026-01-19
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References

  1. Al-Jabri Y., Urosevic M., and Kepic A., 2008, 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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  5. Urosevic, M., Sherlock D., Kepic, A., and Dodds, K., 2007, “Land seismic acquisition repeatability for time-lapse monitoring of CO2 sequestration” 19th International Conference of Australian Society of Exploration Geophysics, Perth, WA.
  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.
/content/journals/10.1081/22020586.2010.12041987
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  • Article Type: Research Article
Keyword(s): Near Surface; Time-lapse
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