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The near-tip region of a fluid-driven fracture propagating in a permeable elastic solid
E. Detournay
, D. I. Garagash
Civil, Environmental, and Geo- Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
98
Scopus citations
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Dive into the research topics of 'The near-tip region of a fluid-driven fracture propagating in a permeable elastic solid'. Together they form a unique fingerprint.
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Keyphrases
Fluid Pressure
100%
Fluid-driven Fracture
100%
Elastic Solid
100%
Propagation Velocity
100%
Pore Fluid
100%
Near-tip
100%
Fracture Mechanics
50%
Porous Media
50%
Numerical Results
50%
Diffusion Theory
50%
Propagation Speed
50%
Simplifying Assumption
50%
Viscous Flow
50%
Saturated Rock
50%
Zero-pressure
50%
Porous Flow
50%
Porous Media Flow
50%
Pore Fluid Pressure
50%
Fracturing Fluid
50%
Engineering
Pore Fluid
100%
Elastic Solid
100%
Fluid Pressure
100%
Propagation Velocity
66%
Propagation Speed
33%
Impermeable Rock
33%
Simplifying Assumption
33%
Fracture Tip
33%
Viscous Flow
33%
Diffusion Theory
33%
Fracture Mechanics
33%