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On the mixture model for multiphase flow
Mikko Manninen,
Veikko Taivassalo
,
Sirpa Kallio
Research output
:
Book/Report
›
Report
127
Citations (Scopus)
Overview
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Dive into the research topics of 'On the mixture model for multiphase flow'. Together they form a unique fingerprint.
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Engineering
Additional Term
14%
Algebraic Equation
14%
Applicability
14%
Applications
28%
Characteristic Time
14%
Commercial Code
14%
Computational Effort
14%
Concentration Gradient
14%
Continuity Equation
28%
Continuous Phase
28%
Density
14%
Dispersed Phase
57%
Equation Model
14%
Field Equation
14%
Flow Simulation
14%
Mixture
100%
Models
28%
Momentum Equation
42%
Multiphase Flows
28%
Multiphase System
14%
Particle Density
14%
Particle Size
14%
Phase Simulation
14%
Practical Application
14%
Relative Velocity
14%
Rotational Flow
14%
Short Time
14%
Simple Approach
14%
Simplifies
14%
Single-Phase System
14%
Tasks
14%
Terminal Velocity
14%
Turbulent Stress
14%
Viscous Stress
14%
Earth and Planetary Sciences
Area
14%
Closing
28%
Concentration (Composition)
14%
Continuity Equation
14%
Derivation
14%
Gravitation
14%
Hydrodynamics
14%
Investigation
14%
Mixture
100%
Model
28%
Multiphase Flow
28%
Particle
42%
Particle Size
14%
Simplification
14%
Single-Phase Flow
14%
Speed
28%
Starting
14%
Term
14%
Terminal Velocity
14%
Timescale
14%
Turbulent Flow
14%
Utilization
28%
Validity
14%
Value
14%
Vortex
14%
Physics
Approximation
28%
Area
14%
Closing
28%
Eddy
14%
Gravitation
14%
Hydrodynamics
14%
Mixtures
100%
Model
28%
Particle
42%
Particle Size
14%
Single-Phase Flow
14%
Speed
28%
Starting
14%
Terminal Velocity
14%
Terms
14%
Utilization
28%
Validity
14%
Value
14%
Mathematics
Algebraic Equation
14%
Approximation
28%
Characteristic Time
14%
Computational
14%
Computational Effort
14%
Concentration Gradient
14%
Continuity Equation
28%
Field Equation
14%
Flow
28%
Mixture Model
100%
Momentum Equation
42%
Particle Density
14%
Particle Size
14%
Simplified Form
14%
Terminal Velocity
14%
Terms
14%
Timescale
14%
Volume Fraction
14%
Chemistry
Application
28%
Density
14%
Flow
28%
Gravity
14%
Hydrodynamics
14%
Mixture
100%
Particle Density
14%
Particle Size
14%
Physical Property
14%
Suspension
28%
Velocity
28%