Area of research
Ocean Engineering · Mechanical Engineering
Research interest
Research focused on Hull and Wind power, with related work in Structural engineering, Marine engineering, Extreme value theory. Notable publications include 'A review on the technical development of combined wind and wave energy conversion systems', 'Methodology for global structural load effect analysis of the semi-submersible hull of floating wind turbines under still water, wind, and wave loads', and 'Methodology of load effect analysis and ultimate limit state design of semi-submersible hulls of floating wind turbines: With a focus on floater column design'.
A review on the technical development of combined wind and wave energy conversion systems
Global design methodology for semi-submersible hulls of floating wind turbines
A review on design and analysis of floating bridges: Numerical simulations, model tests and field measurements
A frequency domain method for fully coupled modelling and dynamic analysis of floating wind turbines
A frequency-domain hydroelastic approach for modeling and stochastic dynamic analysis of pontoon-type floating bridges
Frequency-domain hydroelastic stress analysis considering local bending effect based on a two-step procedure
Methodology for global structural load effect analysis of the semi-submersible hull of floating wind turbines under still water, wind, and wave loads
Methodology of load effect analysis and ultimate limit state design of semi-submersible hulls of floating wind turbines: With a focus on floater column design
Analysis of extreme internal load effects in columns in a semi-submersible support structure for large floating wind turbines
Effects of inhomogeneous wave modeling on extreme responses of a very long floating bridge
Hydroelastic analysis of a floating bridge under spatially inhomogeneous waves, with emphasis on the effect of drift force modeling
Serviceability Limit State Assessment of Semi-Submersible Floating Wind Turbines
Hydroelasticity analysis of a vessel-shaped fish cage under incident, diffraction and radiation wave fields
Shear lag effects on global bending moments in a long-span pontoon bridge under self-weight, traffic and environmental loads