Affiliation:
1. Bob L. Herd Department of Petroleum Engineering, Texas Tech University, Lubbock, TX 79409, USA
Abstract
The subsurface confinement of anthropogenic carbon dioxide (CO2) demands robust risk assessment methodologies to identify potential leakage pathways. Legacy wells within the Area of Review (AoR) represent one potential leakage pathway. Robust methodologies require enormous amounts of data, which are not available for many old legacy wells. This study strategically categorizes 4386 legacy wells within the AoR of a potential CO2 storage site in the Illinois basin and identifies the high-risk wells by leveraging publicly available data—reports and well logs submitted to state regulatory agencies. Wells were categorized based on their proximity to the injection well location, depth, the mechanical integrity of well barriers, and the accessibility to these wells throughout the project lifecycle. Wells posing immediate risks were identified, guiding prioritized corrective actions and monitoring plans. Out of 4386 wells, 54 have high priority for corrective action, 10 have medium priority, and the remainder are of low priority. Case study results from the Illinois basin demonstrate the effectiveness and applicability of this approach, to assess the risk associated with legacy wells within the AoR of potential CO2 storage site, strategically categorizing over 4000 such wells despite data limitations.
Reference53 articles.
1. Current Situation of Carbon Dioxide Capture, Storage, and Enhanced Oil Recovery in the Oil and Gas Industry;Adu;Can. J. Chem. Eng.,2019
2. Lessons Captured from 50 Years of CCS Projects;Loria;Electr. J.,2021
3. Vishal, V., and Singh, T.N. (2016). Geologic Carbon Sequestration, Springer International Publishing.
4. The Integrity of Oil and Gas Wells;Jackson;Proc. Natl. Acad. Sci. USA,2014
5. A Review of Well Integrity Based on Field Experience at Carbon Utilization and Storage Sites;Iyer;Int. J. Greenh. Gas Control,2022