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Review of propeller hydrodynamics for "LIIKKUTEHO"
Jaakko Pylkkänen
VTT Technical Research Centre of Finland
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Report
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Dive into the research topics of 'Review of propeller hydrodynamics for "LIIKKUTEHO"'. Together they form a unique fingerprint.
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Engineering
Propulsor
100%
Pressure Fluctuation
100%
Reynolds-Averaged Navier-Stokes
100%
Conventional Propeller
100%
Scale Ship
100%
Hydrodynamics
100%
Navier-Stokes Equation
100%
Free Water
50%
Cavitation Tunnel
50%
Design Stage
50%
Hull Form
50%
Cavitating Propeller
50%
Research Group
50%
Lifting Surface
50%
Report Review
50%
Numerical Prediction
50%
Panel Method
50%
INIS
reviews
100%
prediction
100%
hydrodynamics
100%
cavitation
100%
interactions
66%
accuracy
66%
fluctuations
66%
ships
66%
reynolds number
66%
navier-stokes equations
66%
simulation
33%
tools
33%
performance
33%
surfaces
33%
design
33%
evaluation
33%
excitation
33%
panels
33%
surface waters
33%
Keyphrases
Propeller
100%
Hull Pressure
100%
Propeller Hydrodynamics
100%
Statistical Methods
50%
Pressure-induced
50%
Interaction Flow
50%
Unsteady Pressure
50%
Propulsor
25%
Prediction Accuracy
25%
Free Water Surface
25%
Cavitation Tunnel
25%
Cavitating
25%
Cavitation
25%
Early Design Phases
25%
Model Measurement
25%
Reynolds-averaged Navier-Stokes Equations
25%
Wakefield
25%
Surface Code
25%
Lifting Surface
25%
Performance Pressure
25%
Flow Calculation
25%
Unconventional Propulsor
25%
Water Cavitation
25%
Unsteady Reynolds-averaged Navier-Stokes Equations
25%
Numerical Prediction Model
25%
Propeller-induced Hull Pressures
25%
Unsteady Panel Method
25%
Hull-propeller Interaction
25%
Result Prediction
25%