TUHH TUHH
Logo Institute for Fluid Dynamics and Ship Theory (FDS)
Institute for Fluid Dynamics and Ship Theory (FDS)
Logo Institute for Fluid Dynamics and Ship Theory (FDS)
Institute for Fluid Dynamics and Ship Theory (FDS)
EN
Search
EN
Search
  • Home
  • Our Team
    Our Team
    Our Team
    Our Team
    • Current Members
    • Alumni
    • Awards
  • Education
    Education
    Education
    Education
    • Lectures
    • Student Thesis
  • Research
    Research
    Research
    Research
    • Ongoing Projects
    • Completed Projects
    • Publications and Theses
  • Facilities
    Facilities
    Facilities
    Facilities
    • Experimental Facilities
    • Computing Facilities
  • In-House Codes
  • Job Vacancies
FDS > Research > Ongoing Projects

Current Projects

Hydrodynamics and Ship Theory
  • Propeller slipstream induced erosion phenomena
  • ModularShipAssist / Autonomous and cooperative modules for commanded ship assistance in ports
  • MariData / Comprehensive Technologies for the Ship Energy Management
  • Nautical Bottom / Development of an Assessment Method for the Influence of Non-Newtonian Fluids on the Manoeuvring Behaviour of Ships in the Port of Hamburg
  • ProNoVi / Analysis Methods and Design Measures for the Reduction of Noise and Vibration Induced by Marine Propellers
  • Red-Emi / Reduction of hydroacoustic emission from propulsion systems
  • ZAP / Zero Emission Auxiliary Propulsor
  • CMS / Container Monitoring System

 Aerospace Engineering 
  • Ditching of Aircraft

 

Computational Fluid Dynamics
  • QCFD / Quantum Computational Fluid Dynamics
  • TRR181-T4 / Surface Wave-Driven Energy Fluxes at the Air-Sea Interface
  • elbe / an Efficient Lattice Boltzmann Environment
  • 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
  • Panel Method panMARE
  • 2D+t method impact2d

 

Maritime and Ocean Engineering
  • LiftWEC - Development of a lift-based wave energy converter
  • VAMOS / Validation, Measurement and Optimization of Floating Wind Energy
  • ProHyGen / Prototype development of a floating offshore H2 generator and planning of GW offshore hydrogen farms

alt Logo
TU Hamburg
Institute for Fluid Dynamics and Ship Theory (M-8)
Am Schwarzenberg-Campus 4
21073 Hamburg
E-mail : fds@tuhh.de
Phone : +49 40 42878-6052
Links
Imprint
Data Privacy
Signature Root Certificate
Where to find us