Institute for Fluid Dynamics and Ship Theory (FDS)
Institute for Fluid Dynamics and Ship Theory (FDS)
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FDS >
Research >
Ongoing Projects
Ongoing Projects by Research Areas
Artificial Intelligence & Model-order Reduction
Container Monitoring System (CMS)
Ditching of Aircraft
Unsteady simulation approaches for shape optimizations of Energy-Saving-Devices (RTG2583-O2)
Climate-dedicated Engineering
Adjoint Optimization Approaches to Urban Climate Modeling (CIE-A3)
Surface Wave-Driven Energy Fluxes at the Air-Sea Interface (TRR181-T4)
Complex Multidisciplinary Applications
Ditching of Aircraft
Numerical Methods & Algorithm Development
2D+t Method (impact2d)
an Efficient Lattice-Boltzmann Environment (elbe)
panel Code for Maritime Applications and Research (panMARE)
Quantum Computational Fluid Dynamics (QCFD)
Offshore Wind & Renewable Energy
Prototype development of a floating offshore H2 generator and planning of GW offshore hydrogen farms (ProHyGen)
Optimization
Adjoint Optimization Approaches to Urban Climate Modeling (CIE-A3)
Digitaler Optimierungszwilling zur Entwicklung effizienter Schiffsantriebe (ProSA-DOzENT)
Unsteady simulation approaches for shape optimizations of Energy-Saving-Devices (RTG2583-O2)
Physical Modeling
Surface Wave-Driven Energy Fluxes at the Air-Sea Interface (TRR181-T4)
Ship Manoeuving
Autonomous and cooperative modules for commanded ship assistance in ports (ModularShipAssist)
Development of an Assessment Method for the Influence of Non-Newtonian Fluids on the Manoeuvring Behaviour of Ships in the Port of Hamburg (Nautical Bottom)
Ship Propulsion & Energy Saving
Autonomous and cooperative modules for commanded ship assistance in ports (ModularShipAssist)
Digitaler Optimierungszwilling zur Entwicklung effizienter Schiffsantriebe (ProSA-DOzENT)
Hydroelastic simulation of the acoustic behaviour of ship-propeller configurations with and without cavitation
Unsteady simulation approaches for shape optimizations of Energy-Saving-Devices (RTG2583-O2)
Zero Emission Auxiliary Propulsor (ZAP)
Underwater Noise Emissions
Entwicklung einer numerischen Methode zur Vorhersage der hydroakustischen Schallabstrahlung von Propellern und Schiffen
Hydroelastic simulation of the acoustic behaviour of ship-propeller configurations with and without cavitation
Wave Simulations & Seakeeping
Container Monitoring System (CMS)
Surface Wave-Driven Energy Fluxes at the Air-Sea Interface (TRR181-T4)