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Rotordynamic analysis of the AM600 turbine-generator shaftline
Tshimangadzo Mudau
*
, Robert Murray Field
*
Corresponding author for this work
Research output
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Article
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peer-review
3
Citations (Scopus)
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Keyphrases
3D Finite Element Model
25%
AM600
100%
ANSYS Modeling
25%
ANSYS Software
25%
Damage Potential
25%
Design Simplification
25%
Dominant Frequency
25%
Double Cylinders
25%
Excitation Frequency
25%
Finite Element Analysis
25%
Grid Frequency
25%
Grid Load
25%
Grid-connected
25%
Load Flow
25%
Low-pressure Turbine
50%
Lumped Mass
25%
Machine Interface
25%
Mass Calculation
25%
Medium Size
25%
Monoblock
25%
Natural Frequency
50%
Negative Sequence Current
25%
Nuclear Power
25%
Nuclear Power Plant
25%
Nuclear Reactor
25%
Prototype Design
25%
Reactor Plant
25%
Rotordynamic Analysis
100%
Single Cylinder
25%
Torsional Excitation
25%
Torsional Natural Frequency
25%
Transient Disturbance
25%
Turbine Generator
100%
Turbine Rotor
25%
Unit Capacity
25%
Engineering
Cylinder Configurations
33%
Damage Potential
33%
Excitation Frequency
33%
Fem Model
33%
Finite Element Analysis
33%
Load Flow
33%
Low-Pressure Turbine
66%
Lumped Mass
33%
Machine Interface
33%
Nuclear Energy
33%
Nuclear Power Plant
33%
Nuclear Reactor
33%
Resonant Frequency
100%
Rotors
33%
Single Cylinder
33%
Transients
33%
Turbine Generator
100%