Utah FORGE 2-2404: The University of Oklahoma, Application of Advanced Techniques for Determination of Reservoir-Scale Stress State at Utah FORGE - Final Report

Description

This final report summarizes the work done on Utah FORGE project 2-2404. The project aimed to develop a methodology integrating alternative well bore and core-based methods and reservoir-scale focal mechanisms (FM) to better estimate the reservoir stress at FORGE. The project objectives were to apply anelastic strain recovery, differential strain curve analysis, fracture mechanics analysis of drilling-induced cracks and combined them with other wellbore-based sources of stress data available from FORGE (DFIT, flowback, image logs of injection intervals, injection pressure record) to better estimate the near- wellbore stress distribution. Then, the resulting stress field would be inverted together with the reservoir-scale in-situ stress data obtained from a novel interpretation of focal mechanisms to characterize the stress and pore pressure distribution within the reservoir. Integrating these multiple sources of stress data would yield a more reliable estimate of the stress state at the km-scale for use in different FORGE reservoir development activities. The developed methodology can readily be applied to future EGS projects.

Resources

Name Format Description Link
33 Final report for the University of Oklahoma-led Utah FORGE sponsored research project "Application of Advanced Techniques for Determination of Reservoir-Scale Stress State at Utah FORGE". https://gdr.openei.org/files/1811/2-2404%20The%20University%20of%20Oklahoma%20Final%20Technical%20Report.pdf

Tags

  • egs
  • utah-forge
  • final-report
  • drilling-induced-cracks
  • core-based
  • near-wellbore-stress
  • reservoir-stress
  • focal-mechanisms
  • technical-report
  • differential-strain-curve
  • anelastic-strain-recovery
  • well-bore
  • geothermal
  • energy
  • fracture-mechanics

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