In order to better manage and maintain deployed Tidal Stream Turbine (TST) devices their response to complicated and severe loading mechanisms must be established. To aid this process the research presented details a methodology for mapping TST operational data, taken under a variety of operating conditions, to a set of model parameters. The parameter sets were developed based on a TST rotor torque model which, as well as providing means of characterising turbine behaviour, can be used to create TST simulations with minimal computation expense. The use of the model in facilitating parameter surface mapping is demonstrated via its application to a set of rotor torque measurements made of a 1/20th scale TST during flume testing. This model is...
The sustainable deployment of Horizontal Axis Tidal Turbines will require effective management and m...
The paper presents a methodology for the Condition Monitoring (CM) of tidal stream turbines. The pr...
Laboratory testing of tidal turbine models is an essential tool to investigate hydrodynamic interact...
In order to better manage and maintain deployed Tidal Stream Turbine (TST) devices their response to...
The potential of tidal stream turbines simulations on steady-state conditions by the use of a drive ...
Research within the Cardiff Marine Energy Research Group (CMERG) has considered the integrated math...
Tidal Stream Turbines are developing renewable energy devices, for which proof of concept commercial...
This research examines the development and validation of a condition monitoring technique using a 1/...
Until recently tidal stream turbine design has been carried out mainly by experimental prototype tes...
The paper presents an experimental campaign developed to contribute to the current research consider...
Uncertainty in tidal turbine loading contributes significantly to conservatism in turbine design. Th...
The sustainable deployment of Horizontal Axis Tidal Turbines will require effective management and m...
The sustainable deployment of Horizontal Axis Tidal Turbines will require effective management and m...
The paper presents a methodology for the Condition Monitoring (CM) of tidal stream turbines. The pr...
Laboratory testing of tidal turbine models is an essential tool to investigate hydrodynamic interact...
In order to better manage and maintain deployed Tidal Stream Turbine (TST) devices their response to...
The potential of tidal stream turbines simulations on steady-state conditions by the use of a drive ...
Research within the Cardiff Marine Energy Research Group (CMERG) has considered the integrated math...
Tidal Stream Turbines are developing renewable energy devices, for which proof of concept commercial...
This research examines the development and validation of a condition monitoring technique using a 1/...
Until recently tidal stream turbine design has been carried out mainly by experimental prototype tes...
The paper presents an experimental campaign developed to contribute to the current research consider...
Uncertainty in tidal turbine loading contributes significantly to conservatism in turbine design. Th...
The sustainable deployment of Horizontal Axis Tidal Turbines will require effective management and m...
The sustainable deployment of Horizontal Axis Tidal Turbines will require effective management and m...
The paper presents a methodology for the Condition Monitoring (CM) of tidal stream turbines. The pr...
Laboratory testing of tidal turbine models is an essential tool to investigate hydrodynamic interact...