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Influence of geomechanical loading configuration on modeling stress-dependent flow and transport in 3D fractured rocks
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DOI:10.1016/j.jrmge.2026.05.039.png)
Abstract
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• Influence of geomechanical loading configuration on 3D fractured rocks is examined. • The consequences on flow and transport in fracture networks are studied. • Pure stress loading produces enhanced deformation, flow, and transport. • Roller constraints and buffer plates suppress deformation, flow, and transport.
Keywords:
geomechanics modelling
boundary conditions
fracture networks
aperture changes
flow and transport
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