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Dynamic modelling of injectivity evolution in unconsolidated sands
J. Bautista,
A. Dahi Taleghani
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
5
Scopus citations
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Keyphrases
Degree of Consolidation
20%
Deposition Rate
20%
Dynamic Model
100%
Erosion Rate
20%
Field Parameters
20%
Finite Element Method
20%
Fluid Injection
60%
Gas Industry
20%
Gradient Concentration
20%
High Porosity
20%
High-speed Flow
20%
Individual Grains
20%
Initial Porosity
20%
Injection Condition
20%
Injection Rate
20%
Injection Well
20%
Injectivity
100%
Inter-grain
20%
Liquid Phase
20%
Mass Exchange
20%
Matrix Properties
20%
Oil Industry
20%
Partial Differential Equations
20%
Porosity
40%
Porosity Heterogeneity
20%
Pressure Gradient
40%
Pressure Stress
20%
Pressure Transients
20%
Property Condition
20%
Sand
20%
Solid Phase
40%
Stress Concentration
20%
Suitable Scale
20%
System Use
20%
Unconsolidated Formation
40%
Wellbore
100%
Engineering
Flow Rate
20%
Individual Grain
20%
Injection Rate
20%
Injectivity
100%
Liquid Phase
20%
Petroleum Industry
20%
Pressure Gradient
40%
Pressure Stress
20%
Stress Concentration
20%
Transients
20%
Wellbore
100%