AbstractThe mean wake of a three-bladed horizontal axis tidal stream turbine operating at maximum power coefficient has been investigated experimentally in a wide flume with width 11 times the depth, providing minimal restriction to transverse wake development and behaviour of large-scale horizontal turbulence structures. This is an important first stage for understanding wake interaction in turbine arrays and hence large-scale power generation. The rotor diameter has a typical value of 60% of the depth and the thrust coefficient is representative of a full-scale turbine. The shear layers originating from the rotor tip circumference show classic linear expansion downstream, with the rate of a plane shear layer vertically and 1.5 times that ...
AbstractA Reynolds averaged Navier Stokes (RANS) model has been compared with laboratory scale measu...
The influence of the upstream turbulence intensity on the flow characteristics downstream of a labor...
Sustainable and cost effective design for tidal current turbines requires knowledge of the complex n...
AbstractThe mean wake of a three-bladed horizontal axis tidal stream turbine operating at maximum po...
The results of a detailed experimental investigation of the near-wake (up to seven turbine diameters...
Tidal turbines are commonly deployed at sea sites with water depths of up to 50 m to ease their depl...
Characterising the physics involved in the wake developed downstream of vertical axis tidal stream ...
Characterising the physics involved in the wake developed downstream of vertical axis tidal stream ...
Characterising the physics involved in the wake developed downstream of vertical axis tidal stream ...
Until recently tidal stream turbine design has been carried out mainly by experimental prototype tes...
Understanding the flow field around horizontal axis marine current turbines is important if this new...
© 2017 International Association for Hydro-environment Engineering and Research, Asia Pacific Divisi...
© 2017 International Association for Hydro-environment Engineering and Research, Asia Pacific Divisi...
The influence of the upstream turbulence intensity on the flow characteristics downstream of a labor...
The influence of the upstream turbulence intensity on the flow characteristics downstream of a labor...
AbstractA Reynolds averaged Navier Stokes (RANS) model has been compared with laboratory scale measu...
The influence of the upstream turbulence intensity on the flow characteristics downstream of a labor...
Sustainable and cost effective design for tidal current turbines requires knowledge of the complex n...
AbstractThe mean wake of a three-bladed horizontal axis tidal stream turbine operating at maximum po...
The results of a detailed experimental investigation of the near-wake (up to seven turbine diameters...
Tidal turbines are commonly deployed at sea sites with water depths of up to 50 m to ease their depl...
Characterising the physics involved in the wake developed downstream of vertical axis tidal stream ...
Characterising the physics involved in the wake developed downstream of vertical axis tidal stream ...
Characterising the physics involved in the wake developed downstream of vertical axis tidal stream ...
Until recently tidal stream turbine design has been carried out mainly by experimental prototype tes...
Understanding the flow field around horizontal axis marine current turbines is important if this new...
© 2017 International Association for Hydro-environment Engineering and Research, Asia Pacific Divisi...
© 2017 International Association for Hydro-environment Engineering and Research, Asia Pacific Divisi...
The influence of the upstream turbulence intensity on the flow characteristics downstream of a labor...
The influence of the upstream turbulence intensity on the flow characteristics downstream of a labor...
AbstractA Reynolds averaged Navier Stokes (RANS) model has been compared with laboratory scale measu...
The influence of the upstream turbulence intensity on the flow characteristics downstream of a labor...
Sustainable and cost effective design for tidal current turbines requires knowledge of the complex n...