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Kimberlina Closed System Reservoir Simulation
L o a d i n g
Overview

The reservoir-scale CO2 migration model was developed based on a geological study in the Southern San Joaquin Basin, California, using the geologic and hydrogeologic data obtained from many oil fields in that region (Birkholzer et al., 2011; Zhou et al., 2011; Zhou and Birkholzer, 2011). The model was then improved by having more layers in the Vedder Formation (the injection layer) in Wainwright et al. (2013). The domain includes twelve discontinuous or continuous (stacked) formations, extending 84 km in the eastern direction and 112 km in the northern direction. The domain also includes several faults, which are considered to be semi-impermeable sealing faults at large depth. Please see ReadMe fore more details on this submission.

CO2Characterization of Geologic SequestrationKimberlinaNRAPReservoirSimulationTOUGHTOUGH-MPVedderVedder SandVedder sandstoneVedder shalehydrogeologic
Additional Information
KeyValue
CitationWainwright, H. M.; Finsterle, S.; Zhou, Q.; Birkholzer, J. T. Modeling the Performance of Large-Scale CO2 Storage Systems: A Comparison of Different Sensitivity Analysis Methods. International Journal of Greenhouse Gas Control 2013, 17, 189205.\r\nhttps://doi.org/10.1016/j.ijggc.2013.05.007\r\n, DOI: 10.18141/1603331
Dataset AssuranceUNKNOWN
Netl Productyes
Poc Emailandrea.mcnemar@netl.doe.gov
Point Of ContactAndrea McNemar
Program Or ProjectWESTCARB, NRAP
Sensitivity ClassUNKNOWN
Spatial{"type":"MultiPolygon","coordinates":[[[[-115.31249999999999,36.31512514748051],[-115.31249999999999,34.016241889667015],[-120.41015624999999,34.016241889667015],[-120.41015624999999,36.31512514748051],[-115.31249999999999,36.31512514748051]]]]}
Trust FrameworkUNKNOWN
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Assuranceunknown
Data Sensitivity Classunknown
Licenceunknown
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