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Numerical simulation of proppant placement in scaled fracture networks
Y. Song,
A. Dahi Taleghani
Leone Family Department of Energy and Mineral Engineering (EME)
Research output
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Contribution to journal
›
Article
›
peer-review
6
Scopus citations
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Dive into the research topics of 'Numerical simulation of proppant placement in scaled fracture networks'. Together they form a unique fingerprint.
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Keyphrases
Numerical Simulation
100%
Proppant
100%
Fracture Network
100%
Dunes
50%
Primary Fracture
50%
Proppant Transport
50%
Downscaling
25%
Friction
25%
Particle Surface
25%
Natural Fracture
25%
Unconventional Reservoirs
25%
Cohesion
25%
Hydraulic Fracturing
25%
Scaling Analysis
25%
Dimensionless Parameters
25%
Sand Dunes
25%
Computational Fluid Dynamics Modeling
25%
Fracture Surface
25%
Discrete Element Method
25%
Flow Direction
25%
Injection Velocity
25%
Particle Deposition
25%
Rolling Surface
25%
Surface Zone
25%
Sand Bed
25%
T-shaped
25%
Production Enhancement
25%
Slurry Flow
25%
Proppant Size
25%
Stimulation Method
25%
Placement Process
25%
Flow Zone
25%
Shear Thickening Fluid
25%
Momentum Change
25%
Base Shear
25%
Engineering
Proppants
100%
Fracture Network
100%
Proppant Transport
33%
Simulation Result
16%
Dynamic Models
16%
Computational Fluid Dynamics
16%
Hydraulic Fracturing
16%
Particle Surface
16%
Natural Fracture
16%
Dimensionless Parameter
16%
Base Shear
16%
Element Method
16%
Fracture Surface
16%
Discrete Element
16%
Flow Direction
16%
Injection Velocity
16%
Shear Thinning
16%
Proppant Particle
16%