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Fracture Height Containment in the Stimulation of Oriskany Formation
Tushar Vatsa
,
John Yilin Wang
John and Willie Leone Department of Energy & Mineral Engineering (EME)
Research output
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Contribution to journal
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Article
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peer-review
4
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Keyphrases
Acidizing
33%
Appalachian Region
33%
Blowing
33%
Clean-up Time
33%
Damage Mechanism
100%
Deliverability
33%
Department of Energy
33%
Ease of Operation
33%
Energy-driven
33%
Fluid Injection Rate
33%
Fracture Conductivity
33%
Fracture Geometry
33%
Fracture Height Containment
100%
Fracture Treatment
33%
Fracture Type
33%
Fracturing Fluid
66%
Gas Storage Well
66%
Gasses
66%
Height Growth
33%
Hydraulic Fracturing
33%
Infill Drilling
33%
Joint Efforts
33%
Lack of Expertise
33%
Long Fracture
33%
Natural Gas
33%
Natural Gas Storage
33%
North America
33%
Operator Company
33%
Parametrical Study
33%
Power Supply Reliability
33%
Practicing Engineers
33%
Production Well
33%
Proppant
33%
Reservoir Pressure
33%
Reservoir Properties
33%
Rock Fracture
33%
Rock Properties
33%
Sandstone Formation
33%
Seasonal Demand
33%
Short-term Benefits
33%
Sonic Log
33%
Stimulation Mode
33%
Stimulation Technology
33%
Storage Well
33%
Treatment Data
33%
Treatment Schedule
33%
Vertical Height
33%
Well Deliverability
100%
Engineering
Damage Mechanism
75%
Deliverability
100%
Department of Energy
25%
Design Engineer
25%
Fracture Geometry
25%
Gas Storage
50%
Hydraulic Fracturing
25%
Infill Drilling
25%
Injection Rate
25%
Joints (Structural Components)
25%
Natural Gas
25%
Natural Gas Storage
25%
Proppants
25%
Reservoir Pressure
25%
Sandstone
25%
Material Science
Hydraulics
50%
Natural Gas
100%
Rock
50%
Sandstone
50%
Agricultural and Biological Sciences
Rock
100%
Sandstone
100%