We discuss a microstructural model of permeability in fractured solids, where fractures are modeled as recursive families of parallel, equidistant faults. Faults are originated by the attainment of a resistance threshold under the action of a confinement pressure over an initially undamaged, fully elastic matrix, not necessarily isotropic. The initially undamaged matrix might possess a natural permeability, which is modified by the progressive damage of the rock. The particular organization of the micro-faults considered in the model allows to define analytically the equivalent permeability of the solid. The model is particularly appealing to describe the permeability of rock undergoing the process of fracking, in a form that has great computational advantages, since the approach does not track explicitly the formation of individual macro-faults.

A multiscale microstructural model of permeability in fractured solids

De Bellis M. L.;
2016-01-01

Abstract

We discuss a microstructural model of permeability in fractured solids, where fractures are modeled as recursive families of parallel, equidistant faults. Faults are originated by the attainment of a resistance threshold under the action of a confinement pressure over an initially undamaged, fully elastic matrix, not necessarily isotropic. The initially undamaged matrix might possess a natural permeability, which is modified by the progressive damage of the rock. The particular organization of the micro-faults considered in the model allows to define analytically the equivalent permeability of the solid. The model is particularly appealing to describe the permeability of rock undergoing the process of fracking, in a form that has great computational advantages, since the approach does not track explicitly the formation of individual macro-faults.
2016
Lecture Notes in Applied and Computational Mechanics
Peter Wriggers, Peter Eberhard
Inglese
265
283
19
978-3-319-39021-5
978-3-319-39022-2
Springer Verlag
GERMANIA
Porous Medium ,Free Energy Density, Permeability Tensor, Anisotropic Permeability Cohesive Traction
http://www.springer.com/series/4623
no
2 Contributo in Volume::2.1 Contributo in volume (Capitolo o Saggio)
3
268
none
Pandolfi, A.; De Bellis, M. L.; Vecchia, G. D.
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11564/707539
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