4D microtomography of brine-assisted healing processes in deformation-damaged rocksalt: A first look

Publication date

2022-07-05

Authors

Ji, Y.ISNI 0000000512541653
Spiers, C.ISNI 0000000394256746
Hangx, S.J.T.ORCID 0000-0003-2253-3273ISNI 0000000397125426
de Bresser, HansISNI 0000000047156214
Drury, M.ORCID 0000-0002-2246-2009ISNI 000000039058593X

Editors

Bresser, J.H.P. de
Drury, M.R.
Fokker, P. A.
Gazzani, M.
Hangx, S.J.T.
Niemeijer, A.R.
Spiers, C.J.

Advisors

Supervisors

Document Type

Part of book
Open Access logo

License

cc_by_nc_nd

Abstract

Rock salt formations represent key options for storage of natural gas, hydrogen, and compressed air energy, and for storage or disposal of radioactive waste. At depths beyond a few tens or hundreds of meters, undisturbed halite-dominated (>90%) rock salt deposits are usually impermeable and have very low porosity. However, as a result of excavation, nearfield microcracking and associated dilatancy occur in rock salt, increasing porosity and permeability. The connectivity of a brine- or water-vapour-filled microcrack network in deformation-damaged salt, is expected to decrease over time, partly due to dissolutionprecipitation healing. Here, we employ 4D (i.e., time-resolved 3D) microtomography to study the long-term evolution of dilated grain boundary and microcrack networks developed in deformation-damaged natural salt by such brine-assisted processes. We found substantial microstructural modification or “healing” over periods of days to a few months. Cracks and dilated grain boundaries became crystallographically faceted, necked, discontinuous, and disconnected, and often migrated to “recrystallize” the material, producing an increase in tortuosity and a decrease in connectivity of the crack network. The magnitude and rate of associated permeability reduction and its evolution with time remain to be determined in future studies.

Keywords

Citation

Ji, Y, Spiers, C J, Hangx, S J T, de Bresser, J H P & Drury, M R 2022, 4D microtomography of brine-assisted healing processes in deformation-damaged rocksalt : A first look. in J H P D Bresser, M R Drury, P A Fokker, M Gazzani, S J T Hangx, A R Niemeijer & C J Spiers (eds), The Mechanical Behavior of Salt X : Proceedings of the 10th Conference on the Mechanical Behavior of Salt (SaltMech X), Utrecht, The Netherlands, 06-08 July 2022. 1 edn, CRC Press, London, pp. 88-97, 10th Conference on the Mechanical Behavior of Salt, Utrecht, Netherlands, 6/07/22. https://doi.org/10.1201/9781003295808-9, conference