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A robust geochemical simulator to model improved-oil-recovery methods
Haishan Luo
,
Emad W. Al-Shalabi
, Mojdeh Delshad
, Krishna Panthi
, Kamy Sepehrnoori
The University of Texas at Austin
Research output
:
Contribution to journal
›
Article
›
peer-review
26
Scopus citations
Overview
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Dive into the research topics of 'A robust geochemical simulator to model improved-oil-recovery methods'. Together they form a unique fingerprint.
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Engineering
Oil Recovery
100%
Surfactant
60%
Geochemical Reaction
40%
Newton-Raphson Method
40%
Sacrificial Agent
40%
Activity Coefficient
40%
Jacobian matrix
20%
Effluent Concentration
20%
Recovery Process
20%
Nonlinear Function
20%
Reaction Equation
20%
Mass Balance Equation
20%
Polymer Flood
20%
Oil Pressure
20%
Equilibrium Reaction
20%
Pressure Drop
20%
Ionic Strength
20%
Linear Equation System
20%
Multiphase Flow
20%
Rate Constant
20%
Earth and Planetary Sciences
Oil Recovery
100%
Surfactant
60%
Salinity
40%
Activity Coefficient
40%
Chemical Flooding
20%
Multiphase Flow
20%
Coupled Flow
20%
Linear Systems
20%
Chemical Element
20%
Chemical Engineering
Surfactant
100%
Ethylenediaminetetraacetic Acid
66%
Linear Systems
33%
Chemical Element
33%