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Journal Article

Room-Scale CO2 Injections in a Physical Reservoir Model with Faults

M. A. Fernø; M. Haugen; K. Eikehaug; O. Folkvord; B. Benali; J. W Both; E. Storvik; C. W. Nixon; R. L. Gawthrope; J. M. Nordbotten
Transport in Porous Media · Vol. 151, Issue 5 · pp. 913-937 · 2024

Abstract

We perform a series of repeated CO 2 injections in a room-scale physical model of a faulted geological cross-section. Relevant parameters for subsurface carbon storage, including multiphase flows, capillary CO 2 trapping, dissolution and convective mixing, are studied and quantified. As part of a validation benchmark study, we address and quantify six predefined metrics for storage capacity and security in typical CO 2 storage operations. Using the same geometry, we investigate the degree of reproducibility of five repeated experimental runs. Our analysis focuses on physical variations of the spatial distribution of mobile and dissolved CO 2 , multiphase flow patterns, development in mass of the aqueous and gaseous phases, gravitational fingers and leakage dynamics. We observe very good reproducibility in homogenous regions with up to 97% overlap between repeated runs, and that fault-related heterogeneity tends to decrease reproducibility. Notably, we observe an oscillating CO 2 leakage behavior from the spill point of an anticline and discuss the observed phenomenon within the constraints of the studied system.

Bibliographic Information

JournalTransport in Porous Media
PublisherSpringer
Publication Date2024-03-01
Publication Year2024
Volume151
Issue5
Pages913-937
Document TypeJournal Article
Print ISSN0169-3913
eISSN1573-1634
DOI10.1007/s11242-023-02013-4

Access Information

NARA Access Coverage1986-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11242
Publisher PageOpen Publisher Page
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