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Impact of Geomechanics Model Simplifications on Assessing Flow and Transport in 3D Fracture Networks
1 Introduction Mechanical processes in fractured rocks could induce stress perturbations that trigger fracture aperture changes and further affect hydraulic processes like fluid flow and solute transport [1-6]. Estimating fracture aperture changes under in-situ stress conditions has been investigated using various models and assumptions. Goodman (1976) [7] proposed an empirical hyperbolic function to describe the response of fractures under normal stress.
Anomalous transport and upscaling in critically-connected fracture networks under stress conditions
Accéder directement au contenu Article Dans Une Revue Journal of Hydrology Année : 2024 Anomalous transport and upscaling in critically-connected fracture networks under stress conditions Fichier sous embargo 0 ― 4 ― 2 Année Mois Jours Avant la publication samedi 20 juillet 2024 hal-04473685 , version 1 (18-03-2024) Chuanyin Jiang, Delphine Roubinet, Qinghua Lei, Yanyong Wang, Xiaoguang Wang. Anomalous transport and upscaling in critically-connected fracture networks under stress conditions.
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