The development of tidal energy in Australia is still a challenge with few studies performed on the characterisation of the resource, due to the difficulty to acquire data and uncertainties about the influence of this anthropogenic activity on the marine environment. Changes in flow could lead to alterations in sediment transport and have further influence on the marine habitat. A case study in a promising area, Banks Strait (Australia), was created using high resolution 2D and 3D models validated against in situ data to investigate changes to hydrodynamic conditions with two scenarios of tidal farms (100 and 300 turbines). Comparison between 2D and 3D is performed to find the best compromise between model accuracy and computational time fo...
Tidal stream generators extract kinetic energy from tidal flows and convert it to electricity. Such ...
This work aims at investigating the impact of different tidal turbine locations on hydrodynamics in ...
Interest in the marine renewable energy devices, and particularly tidal stream turbines, has increas...
The development of tidal energy in Australia is still a challenge with few studies performed on the ...
Interest for renewable energy has increased recently with the motivation to create a sustainable ene...
Banks Strait, Australia has been identified as highly promising for tidal turbine deployments. To as...
The Clarence Strait, Northern Territory, Australia has been identified as a promising region for tid...
Current research conducted as part of the ARENA (Australian Renewable Energy Agency) AUSTEn (Austral...
Banks Strait, Tasmania, Australia, has been identified as a potential site for the deployment of tid...
Banks Strait, Tasmania, Australia, has been identified as a potential site for the deployment of tid...
Banks Strait is a 15 km wide tidal channel in Tasmania, Australia, and has been identified as a pros...
Tidal stream turbines are one of the most advanced marine renewable energy technologies. Nonetheless...
Tidal current turbines have the potential to provide a proportion of global energy requirements. Ins...
Tidal stream power generation offers the prospect of predictable, low-CO2 power at a number of locat...
Tidal stream generators extract kinetic energy from tidal flows and convert it to electricity. Such ...
This work aims at investigating the impact of different tidal turbine locations on hydrodynamics in ...
Interest in the marine renewable energy devices, and particularly tidal stream turbines, has increas...
The development of tidal energy in Australia is still a challenge with few studies performed on the ...
Interest for renewable energy has increased recently with the motivation to create a sustainable ene...
Banks Strait, Australia has been identified as highly promising for tidal turbine deployments. To as...
The Clarence Strait, Northern Territory, Australia has been identified as a promising region for tid...
Current research conducted as part of the ARENA (Australian Renewable Energy Agency) AUSTEn (Austral...
Banks Strait, Tasmania, Australia, has been identified as a potential site for the deployment of tid...
Banks Strait, Tasmania, Australia, has been identified as a potential site for the deployment of tid...
Banks Strait is a 15 km wide tidal channel in Tasmania, Australia, and has been identified as a pros...
Tidal stream turbines are one of the most advanced marine renewable energy technologies. Nonetheless...
Tidal current turbines have the potential to provide a proportion of global energy requirements. Ins...
Tidal stream power generation offers the prospect of predictable, low-CO2 power at a number of locat...
Tidal stream generators extract kinetic energy from tidal flows and convert it to electricity. Such ...
This work aims at investigating the impact of different tidal turbine locations on hydrodynamics in ...
Interest in the marine renewable energy devices, and particularly tidal stream turbines, has increas...