A feasibility and efficiency study of seismic waveform inversion for time-lapse monitoring of onshore CO2 geological storage sites using reflection seismic acquisition geometries

A feasibility and efficiency study of seismic waveform inversion for time-lapse monitoring of... •A synthetic experiment based on the Heletz CO2 geological storage experimental site with typical reflection acquisition geometries was performed.•It may be possible to use a combination of sparse spatial sampling geometries and seismic waveform inversion to monitor the velocity changes caused by CO2 injection.•Double difference full waveform inversion is an effective tool for time-lapse full waveform inversion with typical reflection data sets.•Seismic waveform inversion may be a good complement to standard CDP processing when monitoring CO2 injection. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png International Journal of Greenhouse Gas Control Elsevier

A feasibility and efficiency study of seismic waveform inversion for time-lapse monitoring of onshore CO2 geological storage sites using reflection seismic acquisition geometries

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Publisher
Elsevier
Copyright
Copyright © 2015 Elsevier Ltd
ISSN
1750-5836
eISSN
1878-0148
D.O.I.
10.1016/j.ijggc.2015.11.015
Publisher site
See Article on Publisher Site

Abstract

•A synthetic experiment based on the Heletz CO2 geological storage experimental site with typical reflection acquisition geometries was performed.•It may be possible to use a combination of sparse spatial sampling geometries and seismic waveform inversion to monitor the velocity changes caused by CO2 injection.•Double difference full waveform inversion is an effective tool for time-lapse full waveform inversion with typical reflection data sets.•Seismic waveform inversion may be a good complement to standard CDP processing when monitoring CO2 injection.

Journal

International Journal of Greenhouse Gas ControlElsevier

Published: May 1, 2016

References

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