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Thermodynamically-consistent modeling of adsorption in liquid-rich shales
Vaibhav Rajput
, Turgay Ertekin
John and Willie Leone Department of Energy & Mineral Engineering (EME)
Institute for Computational and Data Sciences (ICDS)
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
7
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Scopus citations
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Dive into the research topics of 'Thermodynamically-consistent modeling of adsorption in liquid-rich shales'. Together they form a unique fingerprint.
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Keyphrases
Self-consistent Modeling
100%
Adsorbed Phase
100%
Storage Mechanism
100%
Liquid-rich Shale
100%
Adsorption Modeling
100%
Thermodynamically Consistent Model
100%
Adsorption from Liquid Phase
100%
Shale
66%
Shale Reservoir
66%
Ideal Adsorbed Solution Theory
66%
Thermodynamics
33%
Liquid Phase
33%
Adsorption
33%
Sorption
33%
Adsorbent
33%
Accurate Estimation
33%
Adsorption Capacity
33%
Gas Adsorption
33%
Enhanced Recovery
33%
Material Balance
33%
Consistent Method
33%
Vapor Phase
33%
Reservoir Simulation
33%
Gas Storage
33%
Transportation Mechanism
33%
Dry Gas
33%
Adsorption Affinity
33%
Saturation Condition
33%
Fluid Storage
33%
Liquid-rich
33%
Hydrocarbon Components
33%
Fluid Transportation
33%
Gas Shale Reservoirs
33%
Liquid Mixtures
33%
Recoverable Reserves
33%
Balancing Techniques
33%
Engineering
Liquid Phase
100%
Rich Shale
100%
Adsorption Capacity
25%
Material Balance
25%
Phase Mixture
25%
Rich Liquid
25%
Gas Storage
25%
Dry Gas
25%
Enhanced Recovery
25%
Storage Fluid
25%
Initial Gas
25%
Gas Adsorption
25%
Thermodynamics
25%
Recoverable Reserve
25%
Chemical Engineering
Gas Adsorption
100%
Sorption
100%
Thermodynamics
100%
Hydrocarbon
100%