University of Illinois Campus Deep Direct-Use Feasibility Study - Porosity and Permeability of Rock Formations

Description

Porosity and permeability data from published and unpublished sources for the St. Peter and Mt. Simon Sandstones in the Illinois Basin.

Resources

Name Format Description Link
0 This study found that multiscale pore structure of rocks in sedimentary reservoirs and the mineralogy associated with those pores are critical factors for estimating reservoir properties, including fluid mass in place, permeability, and capillary pressures, as well as geochemical interactions between the rock and the fluid. https://doi.org/10.1016/j.marpetgeo.2017.11.004
53 Data compiled from unpublished drilling logs and reports for the St. Peter in the Illinois Basin. The data in columns A to S were imported from the ISGS wells and borings database. **All elevations and depths are in ft. The column headings are defined in the resource titled 'Porosity and Permeability Heading Descriptions'. The following column headings are defined below. Po_pct = primary porosity in percent Phi = formation porosity in phi units Hk_md = horizontal permeability in millidarcies Vk_md = vertical permeability in millidarcies Sw = water saturation So = oil saturation https://gdr.openei.org/files/1064/porosity_permeability_st_peter%20%281%29.xlsx
21 Models of CO2 injection and the post-injection migration for several reservoirs in the US were developed based on geologic and petrophysical data. Simulations, experiments, and theory are used to clarify the fluid mechanics of CO2 storage, with the goal of informing government policy to implement carbon capture storage (CCS). https://dspace.mit.edu/handle/1721.1/82834
21 Heading descriptions for the 'St. Peter Porosity and Permeability' data as provided by the Illinois State Geological Survey https://isgs-oas.isgs.illinois.edu/geoprodDAD/image_get.pdf?p_id=12

Tags

  • deep-direct-use
  • illinois-basin
  • st-peter-sandstone
  • oil-and-gas-well
  • permeability
  • ddu
  • porosity
  • mt-simon-sandstone
  • geothermal
  • energy
  • university-of-illinois

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