An extension of actuator disc theory is used to describe the properties of a tidal energy device, or row of tidal energy devices, within a depth-averaged numerical model. This approach allows a direct link to be made between an actual tidal device and its equivalent momentum sink in a depth-averaged domain. Extended actuator disc theory also leads to a measure of efficiency for an energy device in a tidal stream of finite Froude number, where efficiency is defined as the ratio of power extracted by one or more tidal devices to the total power removed from the tidal stream. To demonstrate the use of actuator disc theory in a depth-averaged model, tidal flow in a simple channel is approximated using the shallow water equations and the results...
Tidal currents are a promising source of clean and renewable power in many locations worldwide. In ...
International audienceAssessing the efficiency of a tidal turbine array is necessary for adequate de...
International audienceTidal turbines are located in shallow water depths in comparison to their dime...
Tidal stream energy has gained attention as a source of predictable and renewable energy. Devices r...
Three dimensional Reynolds-averaged Navier-Stokes computations are presented for an actuator disc re...
Summary: Two-scale actuator disc theory is shown to predict qualitatively the performance of a later...
Tidal currents provide a significant energy source in many locations worldwide, particularly at coa...
Tidal stream energy is a predictable source of renewable energy. Tidal stream turbines have been pro...
Linear momentum actuator disc theory (LMADT) is extended to address the power available to a tidal t...
Tidal power, or the use of tides for electricity production, exists in many forms including tidal ba...
Abstract: With the worldwide trend of controlling the utilization of fossil fuels inducing global cl...
Numerical and experimental investigations of tidal current energy extraction have been conducted in ...
This report presents a step by step extension of the simple one-dimensional linear momentum actuator...
In this paper, an upper bound approach is used to determine the maximum power available to tidal st...
This report presents a step by step extension of the simple one-dimensional linear momentum actuator...
Tidal currents are a promising source of clean and renewable power in many locations worldwide. In ...
International audienceAssessing the efficiency of a tidal turbine array is necessary for adequate de...
International audienceTidal turbines are located in shallow water depths in comparison to their dime...
Tidal stream energy has gained attention as a source of predictable and renewable energy. Devices r...
Three dimensional Reynolds-averaged Navier-Stokes computations are presented for an actuator disc re...
Summary: Two-scale actuator disc theory is shown to predict qualitatively the performance of a later...
Tidal currents provide a significant energy source in many locations worldwide, particularly at coa...
Tidal stream energy is a predictable source of renewable energy. Tidal stream turbines have been pro...
Linear momentum actuator disc theory (LMADT) is extended to address the power available to a tidal t...
Tidal power, or the use of tides for electricity production, exists in many forms including tidal ba...
Abstract: With the worldwide trend of controlling the utilization of fossil fuels inducing global cl...
Numerical and experimental investigations of tidal current energy extraction have been conducted in ...
This report presents a step by step extension of the simple one-dimensional linear momentum actuator...
In this paper, an upper bound approach is used to determine the maximum power available to tidal st...
This report presents a step by step extension of the simple one-dimensional linear momentum actuator...
Tidal currents are a promising source of clean and renewable power in many locations worldwide. In ...
International audienceAssessing the efficiency of a tidal turbine array is necessary for adequate de...
International audienceTidal turbines are located in shallow water depths in comparison to their dime...