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Geomechanical response due to nonisothermal fluid injection into a reservoir
- Source :
- Advances in Water Resources. 153:103942
- Publication Year :
- 2021
- Publisher :
- Elsevier BV, 2021.
-
Abstract
- The geomechanical response of a porous reservoir due to injection of fluid can result from a complex interplay between the changes in porepressure and temperature near the wellbore. As a result, predictions are usually made using either simplified analytical models, which may apply unrealistic assumptions in order to produce a tractable model, or detailed numerical simulations that can be computationally expensive. LaForce et al. (2014a, 2014b) developed a semi-analytical model for the geomechanical response of a reservoir to nonisothermal, multi-phase fluid injection, which has been used in studies of CO 2 sequestration. We demonstrate that a numerical solution using the MOOSE software precisely matches the analytical formulae. We then include various effects in the numerical model that relax the simplifying assumptions made in the analytical derivation. We find the analytic and numerical solutions for the fluid and temperature fronts still agree reasonably, while only qualitative agreement is observed for other quantities such as stress and displacement. We conclude the LaForce, Ennis-King, Paterson, 2014a , LaForce, Mijic, Ennis-King, Paterson, 2014b solutions are useful for rapid investigation of projects involving injection of cold fluid into warm aquifers. However, the enhancements afforded by MOOSE, such as high-precision fluid equations of state and the ability to more accurately capture geological complexity, along with its computational scalability which greatly reduces runtimes, means that MOOSE should be preferred for more sophisticated analyses. Because validating complex coupled codes is challenging, we propose that the model contained herein can be used as a benchmark for other coupled codes.
- Subjects :
- 010504 meteorology & atmospheric sciences
0208 environmental biotechnology
02 engineering and technology
Mechanics
01 natural sciences
020801 environmental engineering
Stress (mechanics)
Wellbore
Scalability
Benchmark (computing)
Fluid injection
Fluid equation
Displacement (fluid)
Geology
0105 earth and related environmental sciences
Water Science and Technology
Subjects
Details
- ISSN :
- 03091708
- Volume :
- 153
- Database :
- OpenAIRE
- Journal :
- Advances in Water Resources
- Accession number :
- edsair.doi...........ae1b0d0c9b620e747f81b4a21ef32dee