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Journal Article

Analysis and Comparison of Natural Shear and Induced Tensile Fractures for Caprock Leakage Assessment

Sahyuo Achuo Dze; Tomos Phillips; Reza Najafi-Silab; Sarah Perez; Tom Bultreys; Vladimir Novak; Christian M. Schlepütz; Veerle Cnudde; Florian Doster; Kamaljit Singh; Kevin Bisdom; Andreas Busch
Transport in Porous Media · Vol. 153, Issue 2 · 2026

Abstract

The comparison between laboratory-induced and subsurface fractures, and their corresponding flow is still unclear. Here, we examine three natural shear fractures and two induced tensile fractures from the same low-permeability lithology. Using high-resolution synchrotron imaging, we extracted three-dimensional fracture void geometries to analyse aperture distributions, surface roughness, and spatial correlation patterns. We then compared measured fracture transmissivities against theoretical predictions from parallel-plate models (cubic law) and direct numerical simulations (DNS) of flow to evaluate consistency and uncertainties. We find that despite differences in heterogeneity, induced tensile and natural shear fractures can generally yield similar flow in caprocks. Our comparisons further indicate that the choice of flow estimation method can introduce more uncertainty than the fracture opening mode.

Bibliographic Information

JournalTransport in Porous Media
PublisherSpringer
Publication Date2026-02-01
Publication Year2026
Volume153
Issue2
Document TypeJournal Article
Print ISSN0169-3913
eISSN1573-1634
DOI10.1007/s11242-025-02283-0

Access Information

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