Effect of Non-Darcy Flow in Transient Pressure Behavior with Poroelastic Dual-Permeability After-Closure Analysis of Fracture Test

Authors

  • Gregory Luis Guillermo Zuñiga Arenas Universidad Nacional de Ingeniería, Peru
  • Joseph Sinchitullo Universidad Nacional de Ingeniería, Peru
  • Eduardo Calle Contreras Universidad Nacional de Ingeniería, Peru

DOI:

https://doi.org/10.18687/LACCEI2024.1.1.1284

Keywords:

Non-Darcy Flow, Transient Pressure, Poroelastic, Dual-Permeability, Fracture Test

Abstract

Non-Darcy flow is introduced to analyze the wellbore dual-pressure responses for naturally fractured reservoirs. The pressure decline is assessed using dual-porosity/dual-permeability poroelastic theory during the post-closure (after-closure) phase of impulse-fracture tests. This analysis reveals that parameters for both matrix and fracture can be estimated based on identified dual-flow regimes. The wellbore pressure behavior is depicted in a log-log pressure plot, where the transition period between pseudolinear and pseudoradial regimes is examined. The log-log plot of pressure indicates that non-Darcy flow significantly impacts the transition period, resulting in a narrower and steeper curve. Moreover, it shows a slight convex shape in the pseudoradial flow region. The semianalytical expressions are provided to estimate these parameters in the limit regions for the dual-flow regimes. Finally, the study also performs a sensitivity analysis and compares the semianalytical solution in limiting cases where Darcy flow in the fracture system is compared.

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Published

2024-07-27

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How to Cite

Zuñiga Arenas, G. L. G., Sinchitullo, J., & Calle Contreras, E. (2024). Effect of Non-Darcy Flow in Transient Pressure Behavior with Poroelastic Dual-Permeability After-Closure Analysis of Fracture Test. LACCEI, 1(10). https://doi.org/10.18687/LACCEI2024.1.1.1284

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