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RANS analyses of cavitating propeller flows: Licentiate thesis
Tuomas Sipilä
Research output
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Thesis
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Licenciate
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Dive into the research topics of 'RANS analyses of cavitating propeller flows: Licentiate thesis'. Together they form a unique fingerprint.
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Keyphrases
Cavitating
100%
RANS Analysis
100%
Cavitation Model
100%
Propeller Flow
100%
Tip Vortex
75%
Validation Studies
50%
Sheet Cavitation
50%
Validation Case
50%
Cavitation Test
50%
Turbulence
25%
Turbulence Model
25%
Numerical Implementation
25%
Simulation Method
25%
Cavitation
25%
Physical Phenomena
25%
Marine Applications
25%
Suction Side
25%
Pressure Side
25%
Performance Characteristics
25%
Equation Solver
25%
Propeller Performance
25%
Discretized
25%
Reynolds-averaged Navier-Stokes Equations
25%
Mass Transfer Model
25%
Ship Propeller
25%
Inflow Conditions
25%
Cavitation Phenomenon
25%
Non-uniform Inflow
25%
Verification Analysis
25%
Empirical Constants
25%
Laminar Flow Separation
25%
Cavitating Flow
25%
High-resolution Grid
25%
Propeller Slipstream
25%
Vortex Cavitation
25%
Validation Analysis
25%
Engineering
Cavitating Propeller
100%
Vortex
100%
Simulation Result
75%
Propeller
50%
Main Difference
25%
Similarities
25%
Sheet Cavitation
25%
Marine Applications
25%
Simulation Method
25%
Suction Side
25%
Pressure Side
25%
Good Correlation
25%
Reynolds-Averaged Navier-Stokes
25%
Slipstream
25%
Performance Characteristic
25%
Mass Transfer Model
25%
Ship Propellers
25%
Numerical Implementation
25%
Limitations
25%
High Resolution
25%
Physical Phenomena
25%
Leading Edge
25%
INIS
cavitation
100%
simulation
80%
validation
50%
vortices
40%
physics
20%
turbulence
20%
sheets
20%
performance
10%
comparative evaluations
10%
applications
10%
correlations
10%
implementation
10%
grids
10%
accuracy
10%
laminar flow
10%
resolution
10%
verification
10%
ships
10%
mass transfer
10%
reynolds number
10%
navier-stokes equations
10%
Physics
Physics
100%
Navier-Stokes Equation
50%
High Resolution
50%
Physical Phenomena
50%
Slipstream
50%
Jet Flow
50%