Area of research
Aerospace Engineering · Mechanics of Materials
Research interest
Research focused on Morphing and Structural engineering, with related work in Twist, Stiffness, Spar. Notable publications include 'Aeroelastic model and analysis of an active camber morphing wing', 'EnKF data-driven reduced order assimilation system', and 'Twist morphing of a composite rotor blade using a novel metamaterial'.
EnKF data-driven reduced order assimilation system
Tailored twist morphing achieved using graded bend–twist metamaterials
System-Level Optimization of Passive Energy Balancing
Resonant passive energy balancing for a morphing helicopter blade
Experimental validation of inertial twist concept for rotor blade application
System Level Optimisation of Passive Energy Balancing
Aeroelastic model and analysis of an active camber morphing wing
Experimental study of lag-twist coupling concept for rotor blade application
Resonant Passive Energy Balancing of Morphing Helicopter Blades with Bend-Twist Coupling
Twist morphing of a composite rotor blade using a novel metamaterial
Passive energy balancing design for a linear actuated morphing wingtip structure
Passive Energy Balancing for Morphing Rotorcraft Actuation: Integration and optimisation
Performance analysis of inertial twist morphing concept in hovering flight
2020cited by 0position: middle
Conceptual-level evaluation of a variable stiffness skin for a morphing wing leading edge
Lag-twist coupling sensitivity and design for a composite blade cross-section with D-spar
Comparison of Constrained Parameterisation Strategies for Aerodynamic Optimisation of Morphing Leading Edge Airfoil
Predicting global strain limits for corrugated panels
Development of a morphing wingtip based on compliant structures
Compliant structures based on stiffness asymmetry
Design and Optimisation of Morphing Aircraft
An equivalent model of corrugated panels with axial and bending coupling