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How natural fractures could affect hydraulic-fracture geometry
Arash Dahi Taleghani
, Jon E. Olson
Leone Family Department of Energy and Mineral Engineering (EME)
Research output
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Contribution to journal
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Article
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peer-review
246
Scopus citations
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Keyphrases
Natural Fracture
100%
Fracture Propagation
60%
Compressive Stress
40%
Tight
20%
In Situ
20%
Finite Element Method
20%
Injection Well
20%
Hydraulic Fracture
20%
Hydraulic Fracturing
20%
Tectonic Stress
20%
In-situ Stress
20%
Enhanced Recovery
20%
Fracture Orientation
20%
Stress Fracture
20%
Fracture Pattern
20%
Fracture Path
20%
Hypocenter
20%
Fracture Treatment
20%
Induced Fracture
20%
Traditional Theory
20%
Microseismic
20%
Microseismic Data
20%
Barnett Shale
20%
Differential Stress
20%
Fracture Geometry
20%
Microseismic Events
20%
Wing Development
20%
Pattern Geometry
20%
Engineering
Hydraulic Fracturing
100%
Natural Fracture
100%
Fracture Geometry
100%
Fracture Propagation
60%
Compressive Stress
40%
Simulation Result
20%
In Situ Stress
20%
Barnett Shale
20%
Earth and Planetary Sciences
Fracture Propagation
100%
Fracture Geometry
100%
Hydraulic Fracturing
100%
Tectonics
33%
Fracturing
33%
Fracture Orientation
33%