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Publications by David Palacio
Impact of Mooring Lines Dynamics on the Fatigue and Ultimate Loads of Three Offshore Floating Wind Turbines Computed With IEC 61400-3 Guideline
Wind Energy
Renewable Energy
the Environment
Sustainability
Related publications
Ultimate Structural and Fatigue Damage Loads of a Spar-Type Floating Wind Turbine
Ships and Offshore Structures
Ocean Engineering
Mechanical Engineering
Development of a Fully Coupled Aero-Hydro-Mooring-Elastic Tool for Floating Offshore Wind Turbines
Journal of Hydrodynamics
Mechanics of Materials
Modeling
Condensed Matter Physics
Mechanical Engineering
Simulation
A Comparison Between the Dynamics of Horizontal and Vertical Axis Offshore Floating Wind Turbines
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
Mathematics
Engineering
Astronomy
Physics
Application of a Monte Carlo Procedure for Probabilistic Fatigue Design of Floating Offshore Wind Turbines
Decoupled Simulations of Offshore Wind Turbines With Reduced Rotor Loads and Aerodynamic Damping
Structure Design and Assessment of a Floating Foundation for Offshore Wind Turbines
Model of Bio-Colonisation on Mooring Lines:Updating Strategy Based on a Static Qualifying Sea State for Floating Wind Turbines
Journal of Marine Science and Engineering
Civil
Ocean Engineering
Technology
Water Science
Structural Engineering
Vertically Movable Tension Leg Mooring System for Offshore Floating Body Subject to Large Horizontal Loads
Journal of the Japan Society of Naval Architects and Ocean Engineers
Adaptive Backstepping Control Based on Floating Offshore High Temperature Superconductor Generator for Wind Turbines
Abstract and Applied Analysis
Applied Mathematics
Analysis