Published 2009 | Version v1
Journal article

Modeling vertical stratification of CO2 injected into a deep layered aquifer

  • 1. CEA CNRS UVSQ, UMR, Lab Sci Climat et Environm, Ctr Etud Saclay, F-91191 Gif Sur Yvette, (France)

Description

The vertical stratification of carbon dioxide CO2 injected into a deep layered aquifer made up of high-permeability and low-permeability layers, such as Utsira aquifer at Sleipner site in Norway, is investigated with a Buckley-Leverett equation including gravity effects. In a first step, we study both by theory and simulation the application of this equation to the vertical migration of a light phase CO2, in a denser phase (water), in 1D vertical columns filled with different types of porous media: homogeneous, piece-wise homogeneous, layered periodic and finally heterogeneous. For each case, we solve the associated Riemann problems and propose semi-analytical solutions describing the spatial and temporal evolution of the light phase saturation. These solutions agree well with simulation results. We show that the flux continuity condition at interfaces between high-permeability and low-permeability layers leads to CO2 saturation discontinuities at these interfaces and. in particular, to a saturation increase beneath low-permeability layers. In a second step, we analyze the vertical migration of a CO2 plume injected into a 2D layered aquifer. We show that the CO2 vertical stratification under each low-permeability layer is induced, as in 1D columns, by the flux continuity condition at interfaces. As the injection takes place at the bottom of the aquifer the velocity and the flux function decrease with elevation and this phenomenon is proposed to explain the stratification under each mudstone layer as observed at Sleipner site. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.1016/j.advwatres.2008.12.009

Additional details

Publishing Information

Journal Title
Advances in Water Resources
Journal Volume
32
Journal Issue
no.3
Journal Page Range
p. 450-462
ISSN
0309-1708

Optional Information

Notes
33 refs.