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Pressure Monitoring above the Injection Zone for CO2 Geological Storage

  • University of Texas at Austin

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Secure CO2 geological storage necessitates robust monitoring methods to provide assurance of CO2 storage. Pressure monitoring above the injection zone is a method to detect potential CO2 leaks into overlying formations. We built a CO2 storage model to characterize pressure changes above the injection zone due to both hydraulic connection and undrained loading. The model considers the existence of a CO2 injector and: (1) a fault either leaky or sealing, (2) a leaky abandoned well, (3) a leaky injector, and (4) a second injector. The results show that changes of pore pressure above the injection zone caused by partially undrained loading can be as large as ~1% of the pressure increase in the injection zone for the chosen reservoir model. The pore pressure in the above-injection zone increases up to a maximum value of ~15 kPa within ~10 days followed by a gradual decay with time in the absence of leaks, while CO2 migration through leaky paths favors a higher (typically one order of magnitude larger) yet more gradual pressure increase through direct fluid communication. Monitoring of pressure changes due to partially undrained loading in the above-injection-zone is a feasible technology to track the CO2 plume but requires high precision pressure measurements.

Original languageEnglish
Title of host publication55th U.S. Rock Mechanics / Geomechanics Symposium 2021
PublisherAmerican Rock Mechanics Association (ARMA)
Pages396-401
Number of pages6
ISBN (Electronic)9781713839125
Publication statusPublished - 1 Jan 2021
Event55th U.S. Rock Mechanics / Geomechanics Symposium 2021 - Houston, Virtual, United States
Duration: 18 Jun 202125 Jun 2021

Publication series

Name55th U.S. Rock Mechanics / Geomechanics Symposium 2021
Volume3

Conference

Conference55th U.S. Rock Mechanics / Geomechanics Symposium 2021
Country/TerritoryUnited States
CityHouston, Virtual
Period18/06/2125/06/21

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