ARDC Research Link Australia Research Link Australia   BETA Research
Link
Australia
  • ARDC Newsletter Subscribe
  • Contact Us
  • Home
  • About
  • Feedback
  • Explore Collaborations
  • Researcher
  • Funded Activity
  • Organisation
  • Researcher
  • Funded Activity
  • Organisation
  • Researcher
  • Funded Activity
  • Organisation

Need help searching? View our Search Guide.

Advanced Search

Current Selection
Field of Research : Marine Engineering
Australian State/Territory : VIC
Clear All
Filter by Field of Research
Marine Engineering (5)
Maritime Engineering (3)
Fluid Physics (2)
Biological Mathematics (1)
Classical Physics (1)
Climatology (excl. Climate Change Processes) (1)
Dynamics, Vibration and Vibration Control (1)
Mechanical Engineering (1)
Numerical and Computational Mathematics not elsewhere classified (1)
Physical Oceanography (1)
Solid Mechanics (1)
Filter by Socio-Economic Objective
Climate Change Models (2)
Expanding Knowledge in Engineering (2)
Atmospheric Processes and Dynamics (1)
Biological sciences (1)
Civil Construction Design (1)
Expanding Knowledge in the Mathematical Sciences (1)
Expanding Knowledge in the Physical Sciences (1)
Navy (1)
Oil and Gas Exploration (1)
Physical sciences (1)
Scientific Instruments (1)
Filter by Funding Provider
Australian Research Council (5)
Filter by Status
Closed (5)
Filter by Scheme
Discovery Projects (4)
Linkage Infrastructure, Equipment and Facilities (1)
Filter by Country
Australia (5)
Filter by Australian State/Territory
VIC (5)
ACT (1)
SA (1)
TAS (1)
  • Researchers (0)
  • Funded Activities (5)
  • Organisations (0)
  • Funded Activity

    Linkage Infrastructure, Equipment And Facilities - Grant ID: LE150100094

    Funder
    Australian Research Council
    Funding Amount
    $400,000.00
    Summary
    Development of a world-class facility for three dimensional dynamic testing. Development of a world-class facility for three dimensional dynamic testing: This project aims to establish a world-class facility for multi-directional dynamic testing. Currently there are no such facilities in Australia. The ability to recreate dynamic motion in all available degrees-of-freedom opens up enormous fields of research not currently possible in Australia. This includes such areas as vibration testing, mate .... Development of a world-class facility for three dimensional dynamic testing. Development of a world-class facility for three dimensional dynamic testing: This project aims to establish a world-class facility for multi-directional dynamic testing. Currently there are no such facilities in Australia. The ability to recreate dynamic motion in all available degrees-of-freedom opens up enormous fields of research not currently possible in Australia. This includes such areas as vibration testing, materials testing, biomechanics and human factors, blast and earthquake simulations, field robotics, automotive safety research, flight/vehicle simulation, and marine applications including sloshing of liquids and liquefaction of fines. In conjunction with a 3D laser doppler system this facility will be unique in the world for dynamic mechanical testing.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP130100215

    Funder
    Australian Research Council
    Funding Amount
    $225,000.00
    Summary
    Global trends in oceanic wind speed and wave height. This project will determine whether winds and waves over the world's oceans have changed over the past 30 years. Such information is critically important in understanding global climate change, evaporation, air-sea interaction and to safely design and operate coastal and offshore facilities.
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP1093383

    Funder
    Australian Research Council
    Funding Amount
    $255,000.00
    Summary
    Numerical simulation of the fish-like swimming of linked bodies. Although Zoologists have made detailed observations of swimming fish there are still many unanswered questions about how they swim. We do not know how the fins and undulating body work together to produce the high speed of the tuna, or the fast turns of a fish escaping danger. We see dolphins swim through the sea's surface but we don't know if they do that because it is much more efficient. This project is designed to simulate arb .... Numerical simulation of the fish-like swimming of linked bodies. Although Zoologists have made detailed observations of swimming fish there are still many unanswered questions about how they swim. We do not know how the fins and undulating body work together to produce the high speed of the tuna, or the fast turns of a fish escaping danger. We see dolphins swim through the sea's surface but we don't know if they do that because it is much more efficient. This project is designed to simulate arbitrary fish motion and give answers to these and other questions concerning swimming. It may also help humans to swim more efficiently and provide simulation tools for the design of robotic undersea vehicles.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP170101328

    Funder
    Australian Research Council
    Funding Amount
    $370,500.00
    Summary
    Satellite measurements of ocean wave breaking. This project aims to develop a methodology for global satellite measurements of ocean wave breaking and determine global trends. Measurements of ocean wave breaking are elusive and not available at global scale, but are important for understanding ocean wave dynamics, air-sea interaction, aerosol production, gas transfer, ocean mixing, climate, and other coupled dynamics in the air-sea system, and designing and operating coastal and offshore facilit .... Satellite measurements of ocean wave breaking. This project aims to develop a methodology for global satellite measurements of ocean wave breaking and determine global trends. Measurements of ocean wave breaking are elusive and not available at global scale, but are important for understanding ocean wave dynamics, air-sea interaction, aerosol production, gas transfer, ocean mixing, climate, and other coupled dynamics in the air-sea system, and designing and operating coastal and offshore facilities. This project will produce major updates of wave and General Circulation Models which will be important for our understanding of wave, ocean and climate dynamics, the design and operation of coastal and offshore facilities and the determination of global trends. The new satellite sensing is expected to be used extensively in metocean and engineering applications, and for major updates of wave and general circulation models.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP130104356

    Funder
    Australian Research Council
    Funding Amount
    $320,000.00
    Summary
    Analysis and application of a Lagrangian turbulence model for smoothed particle hydrodynamics. The project will use a new turbulence model to improve the predictions of chaotic motions that include plunging waves, fast flows carrying sediment and the mixing of pollutants.
    More information

    Showing 1-5 of 5 Funded Activites

    Advanced Search

    Advanced search on the Researcher index.

    Advanced search on the Funded Activity index.

    Advanced search on the Organisation index.

    National Collaborative Research Infrastructure Strategy

    The Australian Research Data Commons is enabled by NCRIS.

    ARDC CONNECT NEWSLETTER

    Subscribe to the ARDC Connect Newsletter to keep up-to-date with the latest digital research news, events, resources, career opportunities and more.

    Subscribe

    Quick Links

    • Home
    • About Research Link Australia
    • Product Roadmap
    • Documentation
    • Disclaimer
    • Contact ARDC

    We acknowledge and celebrate the First Australians on whose traditional lands we live and work, and we pay our respects to Elders past, present and emerging.

    Copyright © ARDC. ACN 633 798 857 Terms and Conditions Privacy Policy Accessibility Statement
    Top
    Quick Feedback