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Poromechanical behaviour of a surficial geological barrier during fluid injection into an underlying poroelastic storage formation.


ABSTRACT: A competent low permeability and chemically inert geological barrier is an essential component of any strategy for the deep geological disposal of fluidized hazardous material and greenhouse gases. While the processes of injection are important to the assessment of the sequestration potential of the storage formation, the performance of the caprock is important to the containment potential, which can be compromised by the development of cracks and other defects that might be activated during and after injection. This paper presents a mathematical modelling approach that can be used to assess the state of stress in a surficial caprock during injection of a fluid to the interior of a poroelastic storage formation. Important information related to time-dependent evolution of the stress state and displacements of the surficial caprock with injection rates, and the stress state in the storage formation can be obtained from the theoretical developments. Most importantly, numerical results illustrate the influence of poromechanics on the development of adverse stress states in the geological barrier. The results obtained from the mathematical analysis illustrate that the surface heave increases as the hydraulic conductivity of the caprock decreases, whereas the surface heave decreases as the shear modulus of the caprock increases. The results also illustrate the influence of poromechanics on the development of adverse stress states in the caprock.

SUBMITTER: Selvadurai AP 

PROVIDER: S-EPMC4841472 | biostudies-literature | 2016 Mar

REPOSITORIES: biostudies-literature

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Poromechanical behaviour of a surficial geological barrier during fluid injection into an underlying poroelastic storage formation.

Selvadurai A P S AP   Kim Jueun J  

Proceedings. Mathematical, physical, and engineering sciences 20160301 2187


A competent low permeability and chemically inert geological barrier is an essential component of any strategy for the deep geological disposal of fluidized hazardous material and greenhouse gases. While the processes of injection are important to the assessment of the sequestration potential of the storage formation, the performance of the <i>caprock</i> is important to the containment potential, which can be compromised by the development of cracks and other defects that might be activated dur  ...[more]

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