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Resilience model (MTSRF Project 2.5i.4)
Australian Institute of Marine Science
This simulation model allows various scenarios to be run which test how different percentages of nutrient reductions (and the parallel improvement in inshore reef quality) might... -
Hydrodynamics at the whole of Great Barrier Reef scale (MTSRF Project 2.5i.1)
Australian Institute of Marine Science
A three-dimensional whole-of-GBR baroclinic hydrodynamic model was applied at a spatial resolution of between 1 and 4 km. The model simulations are compiled to examine the... -
Modelled flood plumes - central and northern Great Barrier Reef
Australian Institute of Marine Science
MECCA - a verified 3-dimensional hydrodynamic model was used to simulate river plume dynamics. Model simulations were compiled to examine the intensity, duration and frequency... -
WAMSI Node 6.2 - The Impact of tides and internal waves on offshore...
The oceanographic mooring instrument was deployed from 25th March 2010 to 16th June, 2010, on a mooring located at inner-shelf break, Browse Basin in 200 m of water.... -
WAMSI Node 6.2 - The Impact of tides and internal waves on offshore...
School of Environmental Systems Engineering, The University of Western Australia (UWA)
The oceanographic mooring instrument was deployed from 25th March 2010 to 16th June, 2010, on a mooring located at inner-shelf break, Browse Basin in 100 m of water.... -
WAMSI Node 6.2 - The Impact of tides and internal waves on offshore...
School of Environmental Systems Engineering, The University of Western Australia (UWA)
The oceanographic mooring instrument was deployed from 10th November 2009 to 4th January 2010, on a mooring llocated at Ningaloo off Tantabiddi Beach in 150 m of water.... -
WAMSI Node 6.2 - The Impact of tides and internal waves on offshore...
School of Environmental Systems Engineering, The University of Western Australia (UWA)
The oceanographic mooring instrument was deployed from 10th November 2009 to 4th January 2010, on a mooring located at Ningaloo off Tantabiddi Beach in 75 m of water....
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