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Avoiding pitfalls in multiphase thermo-hydrodynamic coupling
Luis F. Ayala
, Eltohami S. Eltohami
, Michael A. Adewumi
John and Willie Leone Department of Energy & Mineral Engineering (EME)
Research output
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peer-review
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Keyphrases
Multiphase Flow
100%
Computation Time
66%
Technology Development
33%
Efficient Modeling
33%
Modeling Effort
33%
Isothermal Condition
33%
Hydrodynamic Modeling
33%
Industrial Processes
33%
Order of Accuracy
33%
Material Balance
33%
Behavioral Model
33%
Continuum Mechanics
33%
Accurate Modeling
33%
Fluid Mechanics
33%
System Thermodynamics
33%
Mass Conservation
33%
Petroleum Industry
33%
Basic Law
33%
Flow Process
33%
Surface Reservoirs
33%
Hydrodynamic Processes
33%
Physical Laws
33%
Offshore Facilities
33%
Petroleum Products
33%
Fundamental Modeling
33%
Multiphase Hydrodynamics
33%
Thermal Phase Behavior
33%
Engineering
Hydrodynamics
100%
Multiphase Flow
100%
Computational Time
66%
Isothermal Condition
33%
Constrains
33%
Material Balance
33%
Continuum Mechanics
33%
Fluid Mechanics
33%
Thermodynamic System
33%
Conservation of Mass
33%
Petroleum Product
33%
Surface Facility
33%
Petroleum Industry
33%
Material Science
Hydrodynamics
100%
Multiphase Flow
100%
Continuum Mechanics
33%
Fluid Mechanics
33%
Petroleum Product
33%
Surface (Surface Science)
33%
Earth and Planetary Sciences
Multiphase Flow
100%
Continuum Mechanics
33%
Fluid Mechanics
33%
Material Balance
33%
Petroleum Industry
33%
Petroleum Product
33%
Chemical Engineering
Petroleum Derivative
100%