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A numerical method to simulate turbulent cavitating flows
A. Gnanaskandan
, Krishnan Mahesh
Aerospace Engineering and Mechanics
Research output
:
Contribution to journal
›
Article
›
peer-review
86
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Scopus citations
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Keyphrases
Numerical Methods
100%
Cavitating Flow
100%
Material Discontinuity
66%
Shock
33%
Hydrofoil
33%
Sensor-based
33%
Vapor Phase
33%
Unstructured Grid
33%
Liquid Phase
33%
Navier-Stokes Equations
33%
Transport Equation
33%
Predictive Algorithm
33%
Mass Fraction
33%
Non-axisymmetric
33%
Thermal Equilibrium
33%
Vapor-liquid-solid
33%
Filtering Scheme
33%
Non-ideal Mixing
33%
Multiphase Media
33%
Flow Problems
33%
Jump Conditions
33%
Non-condensable Gas
33%
Canonical Problems
33%
Vapor Mixtures
33%
Symmetric Schemes
33%
Homogeneous Mixture Model
33%
Non-dissipative Schemes
33%
Vapor Volume Fraction
33%
Characteristic-based
33%
Shock Discontinuities
33%
Engineering
Corrector
100%
Numerical Methods
100%
One Dimensional
50%
Good Agreement
50%
Mass Fraction
50%
Flow Problem
50%
Thermal Equilibrium
50%
Jump Condition
50%
Hydrofoil
50%
Navier-Stokes Equation
50%
Ideal Gas
50%