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Hydraulic fracture propagation under steady state fluid flow

  • Université Paris-Est

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

The stress intensity factor at a fracture tip in a porous medium subjected to a fluid injection is studied. This factor evolves during the transient flow phase and tends to a limit value for the steady state. For simple fracture geometries, the finite element simulations show that for constant injection pressures this factor reaches its maximum value in the steady state regime. This result allows simplifying significantly the study and modeling of hydraulic fracture propagation because the determination of the steady flow solution is much easier and faster than the transient flow. In addition, some couplings between hydraulic and mechanical problems disappear under steady state flow and make it possible to establish some closed-form approximate expressions. These can be useful especially in the context of CO2 sequestration projects where the fluid injection is pressure-controlled.

Original languageEnglish
Title of host publicationRock Engineering and Rock Mechanics
Subtitle of host publicationStructures in and on Rock Masses
PublisherCRC Press
Pages1363-1368
Number of pages6
ISBN (Electronic)9781315749525
ISBN (Print)9781138001497
Publication statusPublished - 12 May 2014
Externally publishedYes

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