Authors / CoAuthors
Nguyen, D.N. | Lescinsky, D.T.
Abstract
The Australian Government, through the Department of Resources, Energy and Tourism, has supported Geoscience Australia in undertaking a series of regional-scale, geological studies to assess the CO2 storage potential of sedimentary basins, including the Petrel Sub-basin. The studies form part of the National Low Emissions Coal Initiative designed to accelerate the development of CO2 transport and storage infrastructure near the sources of major energy and industrial emissions. The Petrel Sub-basin was identified as a high-priority region for a future pre-competitive work program by the national Carbon Storage Taskforce. The Carbon Storage Taskforce also recommended the release of greenhouse gas assessment permits, which were released within the Petrel Sub-basin in 2009. As a component of the studies at Geoscience Australia, the numerical simulation was hypothetically designed to dynamically model the reservoir behavior and CO2 migration during the injection and post-injection stages using an in-house built 3D geological model of a represented injection site. 14 million tonnes per annum (MTPA) of CO2 was injected into the lower Frigate/Elang/Plover reservoir over 30 years and CO2 plume migration was simulated up to 2,000 years from the initial injection. The injection rate of 14 MTPA of CO2 used in this study was based on the predicted 2020 CO2 emissions of the Darwin Hub, a figure defined by the Carbon Storage Taskforce (2009). The poster highlights the simulation results including CO2 plume migration distance, CO2 trapping mechanisms and reservoir pressure behavior.
Product Type
nonGeographicDataset
eCat Id
77403
Contact for the resource
Custodian
Custodian
PO Box 1130 None
Bently
WA
6102
Australia
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Cnr Jerrabomberra Ave and Hindmarsh Dr GPO Box 378
Canberra
ACT
2601
Australia
Keywords
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- External Publication
- ( Theme )
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- carbon dioxide
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- NT
- Australian and New Zealand Standard Research Classification (ANZSRC)
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- Geology
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- Published_Internal
Publication Date
2013-01-01T00:00:00
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notPlanned
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geoscientificInformation
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Abstract for 2013 CO2CRC Research Symposium
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Bonaparte Basin 127.0 129.0 -15.0 -12.0 Bonaparte Basin 127.0 129.0 -15.0 -12.0