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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Australasia
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Australia
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Otway Basin (2)
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Queensland Australia (1)
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Western Australia (1)
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United States
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Utah
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petroleum
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natural gas (1)
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geologic age
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Mesozoic
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Cretaceous
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Upper Cretaceous
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Ferron Sandstone Member (1)
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Primary terms
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Australasia
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Australia
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Otway Basin (2)
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Queensland Australia (1)
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Western Australia (1)
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data processing (1)
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diagenesis (1)
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geophysical methods (3)
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ground water (1)
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Mesozoic
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Cretaceous
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Upper Cretaceous
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Ferron Sandstone Member (1)
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petroleum
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natural gas (1)
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sandstone (1)
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United States
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Utah
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Wayne County Utah (1)
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sedimentary rocks
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Distributed fiber-optic sensing transforms an abandoned well into a permanent geophysical monitoring array: A case study from Australian South West
SOURCE-TO-SINK SEDIMENT BUDGET ANALYSIS OF THE CRETACEOUS FERRON SANDSTONE, UTAH, U.S.A., USING THE FULCRUM APPROACH
Time-lapse seismic monitoring of CO 2 injection into a depleted gas reservoir—Naylor Field, Australia
Developing a monitoring and verification plan with reference to the Australian Otway CO 2 pilot project
Abstract Reservoir engineering is an important factor in the planning and execution of a CO 2 sequestration project. Site characterization concerns issues such as the integrity of the top seal, the depth of the storage formation, the storage capacity, and the use of history matching in depleted oil and gas reservoirs. Numerical modeling of the CO 2 injection and migration helps in the design of the injection plan, predicting the CO 2 migration path, determining the amount of CO 2 that can be safely injected, and performing risk assessment. In the long term, various trapping mechanisms are involved in securing the CO 2 in place. We briefly review related studies in these areas, present some results of the reservoir engineering modeling work of a pilot project, and use generic models to illustrate the concepts, approaches, and considerations in reservoir engineering aspects in CO 2 sequestration processes.