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Shape Adaptive Blades for Rotorcraft Efficiency
De Breuker, R.
(Participant)
Sodja, J.
(Participant)
Zahoor, Y.
(Participant)
Aerospace Structures & Computational Mechanics
Overview
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Research output
(3)
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Explore the research topics touched on by this project. These labels are generated based on the underlying awards/grants. Together they form a unique fingerprint.
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Weight
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Engineering
Rotorcraft
91%
Rotors
66%
Camber Morphing
63%
Helicopters
63%
Development
57%
Design
54%
Helicopter Rotors
45%
Performance Improvement
38%
Morphing Trailing Edge
38%
Ecodesign
38%
Preliminary Design
38%
Rotor Technology
38%
Efficiency
38%
Surface
38%
Models
34%
Performance
28%
Trailing Edge
28%
Requirement
25%
Control Surfaces
25%
INIS
helicopters
100%
rotors
90%
design
80%
performance
57%
shape
46%
efficiency
45%
emission
41%
surfaces
38%
environment
38%
Keyphrases
Shape-adaptive
38%
Adaptive Blade
38%
Hoplite
38%
Rotorcraft
38%
Trailing Edge Morphing
38%
Morphing Surface
38%