Data tables associated with velocity modeling of supercritical pore fluids through porous media at reservoir conditions with applications for petroleum secondary migration and carbon sequestration plumes

A time-dependent form of Darcy’s Law was used to model pressure-driven fluid flow within homogeneous, isotropic, low-permeability carrier beds exhibiting a broad range of rock and fluid properties likely encountered in a variety of sedimentary sequences (Burke, 2022). In the study by Burke (2022), thermodynamic equations of state were used to determine thermophysical properties of supercritical pore fluids under reservoir pressures from 0–200 MPa (0–29,000 psi). This Data Release disseminates the numerical data tables for the Darcy flow timescales and velocities of methane and supercritical carbon dioxide used in that study.

Data and Resources

Field Value
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identifier USGS:614a1157d34e0df5fb96fceb
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modified 20220308
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publisher U.S. Geological Survey
publisher_hierarchy Department of the Interior > U.S. Geological Survey
resource-type Dataset
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theme {geospatial}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • amerigeo
  • amerigeoss
  • ckan
  • co2-plume-velocity
  • darcy-flux
  • fluid-mechanics-in-porous-media
  • geo
  • geologic-carbon-sequestration
  • geoscientificinformation
  • geoss
  • national
  • north-america
  • secondary-migration
  • united-states
  • usgs-614a1157d34e0df5fb96fceb
isopen False
license_id notspecified
license_title License not specified
maintainer Lauri A Burke
maintainer_email lburke@usgs.gov
metadata_created 2025-11-21T01:20:35.369356
metadata_modified 2025-11-21T01:20:35.369360
notes A time-dependent form of Darcy’s Law was used to model pressure-driven fluid flow within homogeneous, isotropic, low-permeability carrier beds exhibiting a broad range of rock and fluid properties likely encountered in a variety of sedimentary sequences (Burke, 2022). In the study by Burke (2022), thermodynamic equations of state were used to determine thermophysical properties of supercritical pore fluids under reservoir pressures from 0–200 MPa (0–29,000 psi). This Data Release disseminates the numerical data tables for the Darcy flow timescales and velocities of methane and supercritical carbon dioxide used in that study.
num_resources 2
num_tags 15
title Data tables associated with velocity modeling of supercritical pore fluids through porous media at reservoir conditions with applications for petroleum secondary migration and carbon sequestration plumes