| Name |
Format |
Description |
Link |
|
21 |
This report details and tests the workflow that will be used to simulate steel well casings in deviated production/extraction boreholes at at the Utah FORGE site. Boreholes will be electrically energized and will serve as data sources for future proposed electromagnetic borehole surveys, which will be used to delineate/estimate the size and porosity of the main FORGE stimulated reservoir. |
https://gdr.openei.org/submissions/1433 |
|
21 |
This report outlines the creation of three 3D resistivity models that will be used to determine the sensitivity of EM measurements for the hypothetical stimulated reservoir at FORGE as well as for EM survey design. |
https://gdr.openei.org/submissions/1436 |
|
21 |
Report on possible geodetic signature of the 3 stimulations in April 2022 as well as a comparison with existing InSAR data gathered over the site before, during, and after the stimulation. |
https://gdr.openei.org/submissions/1471 |
|
33 |
This study involves progress that is covered in two earlier milestone reports. First we built a 3D resistivity model (milestone 4.1) derived from the 3D inversion of magnetotelluric data. Next we developed a modeling workflow (milestone 4.2) that efficiently and accurately simulates an energized steel-cased well by replacing it with a number of small equivalent current sources. In this report, using the 3D resistivity model and modeling workflow, we simulate several casing source EM configurations and evaluate sensitivity to the stimulated zone. These results will in turn be used to design the EM data acquisition surveys that we will be leading at the FORGE site. |
https://gdr.openei.org/files/1474/FORGE_LBNL_milestone_4p3.pdf |