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Geophysical Techniques for Monitoring CO2 Movement During Sequestration

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The relative merits of the seismic, gravity, and electromagnetic (EM) geophysical techniques are examined as monitoring tools for geologic sequestration of carbon dioxide (CO{sub 2}). This work does not represent an exhaustive study, but rather demonstrates the capabilities of a number of geophysical techniques for two synthetic modeling scenarios. The first scenario represents combined CO{sub 2} enhanced oil recovery (EOR) and sequestration in a producing oil field, the Schrader Bluff field on the north slope of Alaska, USA. EOR/sequestration projects in general and Schrader Bluff in particular represent relatively thin injection intervals with multiple fluid components (oil, hydrocarbon gas, brine, and CO{sub 2}). This model represents the most difficult end member of a complex spectrum of possible sequestration scenarios. The time-lapse performance of seismic, gravity, and EM techniques are considered for the Schrader Bluff model. The second scenario is a gas field that in general resembles conditions of Rio Vista reservoir in the Sacramento Basin of California. Surface gravity, and seismic measurements are considered for this model.

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Last Updated September 29, 2016, 15:45 (LMT)
Created September 29, 2016, 15:45 (LMT)
Citation Erika Gasperikova G. Michael Hoversten ---- Roy Long, Geophysical Techniques for Monitoring CO2 Movement During Sequestration, 2016-09-29, https://edx.netl.doe.gov/dataset/geophysical-techniques-for-monitoring-co2-movement-during-sequestration
Netl Product yes
Poc Email Roy.long@netl.doe.gov
Point Of Contact Roy Long
Program Or Project KMD
Publication Date 2005-11-15