2023
DOI: 10.1007/s40948-023-00606-3
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Size effect on hydraulic properties of rough-walled fractures upscaled from meter-scale granite fractures

Abstract: To better bridge the gap between lab-scale data and larger-scale applications. In this study, an integrated method was developed to investigate the size dependence of fluid flow through rough-walled fractures. Granite fracture surfaces of up to 1 m in size were first scanned to acquire data on their morphology and corresponding surface distribution, the asperity height of which was found to follow a normal distribution. Digital fracture surfaces were then created on the basis of the scanned data and upscaled t… Show more

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