The workshop welcomes contributions covering theoretical, experimental, numerical, and hybrid approaches. Topics of interest include, but are not limited to:
- Linear and nonlinear waves and currents
- Ship dynamics and hydrodynamics for design (resistance, propulsion, seakeeping, maneuvering, hull-form and propulsion optimization)
- Sea loads and responses, including slamming, sloshing, green water, run-up, ice, and impact on ships and floating offshore structures (e.g., breakwaters, FLNG, FSRU, semi-submersibles)
- Propeller cavitation, erosion, and cavitating flows
- Hydrodynamic performance of high-speed vessels and floating offshore structures
- Hydrodynamics of renewable marine energy and ocean resources including offshore wind turbine, wave energy converter, tidal turbine, offshore photovoltaics, etc.
- Computational Fluid Dynamics (CFD), digital twins, numerical wave tanks, and virtual visualization systems
- Coupled problems including fluid–structure interaction, ship hydroelasticity and hydro-elasto-plasticity, hydrodynamic acoustics and underwater noise, ice–wave–structure interactions, etc.
- Multi-scale problems including water-liquid-bubble mixed flows, anisotropy turbulent flows, etc.
- Experimental methods for towing tanks, ice tanks, wave flumes, and ocean basins
- Full scale marine hydrodynamics including sea trial and numerical simulations
- Uncertainty quantification and uncertainty modeling
- Emerging numerical methods and bio-inspired hydrodynamics
- Other aspects of hydrodynamics relevant to ship science and ocean engineering including machine learning, deep learning, AI, big data, big model, etc.
