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contributor authorChenlu Song
contributor authorShinichiro Nakashima
contributor authorRyunosuke Kido
contributor authorHideaki Yasuhara
contributor authorKiyoshi Kishida
date accessioned2022-02-01T21:52:11Z
date available2022-02-01T21:52:11Z
date issued9/1/2021
identifier other%28ASCE%29GM.1943-5622.0002114.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4272196
description abstractHaving a grasp of the variation in the fracture contact area is a kernel in the understanding of the permeability evolution of fractured rocks. However, the number of studies that focus on measuring the long-term variation in the fracture contact area under different conditions is insufficient. In this study, a series of short- and long-term permeability tests under coupled conditions is performed to check the performance of permeability. The results reveal that the permeability measured in the short-term tests shows reversible behavior and a dependence on the applied confining pressures and temperature. In contrast, the permeability in the long-term tests displays irreversible behavior and an irregular change under the constant confining pressure. In order to verify the evolution of permeability, microfocus X-ray computed tomography (CT) is developed to observe the changes in the internal fracture structure under the same conditions as those in long-term permeability tests by assembling a triaxial cell with heating capability. The fracture aperture and the fracture contact-area ratio are calculated by a CT image analysis technique. The image analysis results show that the estimated aperture is seen to decrease with an increase in the confining pressure and to also decrease with time under a constant confining pressure. Moreover, the increase in the fracture contact area under the constant confining pressure observed by X-ray CT is confirmed. This also corresponds to a decrease in permeability in long-term tests. The hydraulic aperture calculated from the permeability tests and that evaluated from the CT observation have a similar decreasing trend. Therefore, the CT observation can better capture the evolution of the internal fracture contact area. These experiments underscore the importance of mechanical compaction and/or mineral dissolution at contacts in determining the rates and the magnitude of permeability evolution within rock fractures.
publisherASCE
titleShort- and Long-Term Observations of Fracture Permeability in Granite by Flow-Through Tests and Comparative Observation by X-Ray CT
typeJournal Paper
journal volume21
journal issue9
journal titleInternational Journal of Geomechanics
identifier doi10.1061/(ASCE)GM.1943-5622.0002114
journal fristpage04021151-1
journal lastpage04021151-15
page15
treeInternational Journal of Geomechanics:;2021:;Volume ( 021 ):;issue: 009
contenttypeFulltext


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