Engineering
Waves Energy
100%
Power Converter
68%
Performance
22%
Takeoff
19%
Experiments
18%
Coastal Protection
16%
Numerical Model
15%
Design
15%
Extreme Wave
15%
Laboratories
15%
Wave Power
13%
Testing
12%
Control Strategy
11%
Transmissions
10%
Estimation
10%
Energy Production
10%
Mooring System
10%
Extreme Load
9%
Survivability
9%
Scale Model
9%
Fields
9%
Models
9%
Numerical Modeling
9%
Production
8%
Optimization
8%
Structural Design
8%
Hydroelectric Energy
8%
Generators
8%
Absorber
8%
Oscillating Water Column
8%
Efficiency
8%
Mooring Line
8%
Probabilistic Design
8%
Design Specification
8%
Integration
8%
Protection Scheme
8%
Wave Height
8%
Wave Loading
8%
Extreme Condition
8%
Power Plant
8%
Design Power
8%
Power Production
7%
Rotors
6%
Installation
6%
Development
5%
Applications
5%
Scale Effect
5%
Body Type
5%
Prototype
5%
Earth and Planetary Sciences
Wave Power
56%
Wave
28%
Condition
18%
Overtopping
16%
Coastal Protection
16%
Utilization
12%
Position (Location)
11%
Harbour
11%
Wave Height
10%
Coast
10%
Wave Climate
10%
Model
10%
Numerical Model
9%
North Sea
9%
Ratio
9%
Efficiency
9%
Paper
9%
Parameter
8%
Foci
8%
Mathematical Model
8%
Experiment
8%
Output
8%
Energy Technology
8%
Prototype
8%
Characterization
8%
Average
8%
Evaluation
8%
Earth Surface Sediment Transport
8%
Installing
7%
Month
7%
Site
6%
Accuracy
6%
Time
5%
Prediction
5%
Magnitude
5%
Array
5%
Denmark
5%
Physics
Model
34%
Takeoff
31%
Direct Power Generator
28%
Numerical Model
15%
Foci
12%
Position (Location)
11%
Universities
11%
Electricity
10%
Ratios
9%
Hydrodynamics
8%
Mooring
7%
Area
5%
Renewable Energy
5%
Reliability
5%
Performance
5%