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NETL
Characterization and 3-D Modeling of Devonian Pinnacle Reefs for CO2 Storage ...
This presentation gives an overview of static and dynamic modeling activities conducted for Devonian pinnacle reefs to investigate CO2 storage and enhanced oil recovery. Case...-
Dataset Size: 3.22 MB
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NETL
Optimizing and Quantifying CO2 Storage Capacity/Resource in Saline Formations...
This presentation gives an overview of a DOE project focused on refining the coefficients used to estimate CO2 storage resource in saline formations and understanding the...-
Dataset Size: 2.222 MB
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NETL
Statistical Analysis of CO2 EOR Production and Injection Data to Examine Ongo...
This presentation gives an overview of the statistical analysis of data from 31 existing CO2 EOR projects. CO2 retention, recovery factor, and utilization factor were analyzed...-
Dataset Size: 1.412 MB
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NETL
Optimizing and Quantifying CO2 Storage Capacity/Resource in Saline Formations...
This presentation gives an overview of a DOE project focused on refining the coefficients used to estimate CO2 storage resource in saline formations and understanding the...-
Dataset Size: 5.164 MB
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NETL
CO2 Storage and Enhanced Oil Recovery: Bald Unit Test Site, Mumford Hills Oil...
Midwest Geological Sequestration Consortium, Phase II, Enhanced Oil Recovery Pilot Project, Mumford Hills Oil Field, Posey County, Indiana.-
Dataset Size: 0 bytes
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NETL
CO2 Storage and Enhanced Oil Recovery: Sugar Creek Oil Field Test Site, Hopki...
Midwest Geological Sequestration Consortium, Phase II, Enhanced Oil Recovery Pilot Project, Sugar Creek Oil Field, Hopkins County, Kentucky-
Dataset Size: 0 bytes
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NETL
Demonstration of CO2-Enhanced Oil Recovery Potential in the Illinois Basin: T...
Midwest Geological Sequestration Consortium, Validation Phase Final Report-
Dataset Size: 0 bytes
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NETL
Enhanced Oil Recovery I: Loudon Single-Well Huff 'n' Puff
Midwest Geological Sequestration Consortium, Phase II, Enhanced Oil Recovery Pilot Project, Loudon Field, Fayette County, Illinois.-
Dataset Size: 0 bytes
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Hydrostratigraphic Model 2 – with Capillary Pressure
Hydrostratigraphic Model 2 has capillary pressure and relative permeability assigned by hydrostratigraphic unit. The model's name is HS2wPc.-
Dataset Size: 1.5 GB
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HydroStratigraphic Model 2 - no Capillary Pressure
HydroStratigraphic Model 2 has no capillary pressure assigned. Relative permeability is assigned by the hydrostratigraphic unit. The model's name is HS2.-
Dataset Size: 1.438 GB
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Linear Model 2 – with Capillary Pressure
Linear Model 1 has a single capillary pressure and a linear relative permeability relationship is assigned homogeneously across the domain. The model’s name is L1wPc.-
Dataset Size: 1.437 GB
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Linear Model 1 – no Capillary Pressure
Linear Model 1 does not have capillary pressure assigned. A single linear relative permeability relationship is assigned homogeneously across the domain. The model’s name is L1..-
Dataset Size: 1.491 GB
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