AbstractAn improved characterisation of the unsteady hydrodynamic loads on tidal turbine blades is necessary to enable more reliable predictions of their fatigue life and to avoid premature failures. To this end, this paper presents a set of blade-root bending moment responses for a scale-model tidal turbine subjected to an unsteady planar forcing in a towing tank. In cases where the boundary layer was believed to be attached to the outer sections of the blade, the out-of-plane bending moment amplitude for unsteady flow was up to 15% greater than the corresponding load measured in steady flow and exhibited a phase-lead of up to 4.5°. Both these observations are qualitatively consistent with the effects of dynamic inflow and non-circulatory ...
AbstractThe transient interaction between tidal currents and the rotation of a horizontal axis turbi...
From MDPI via Jisc Publications RouterHistory: accepted 2021-08-25, pub-electronic 2021-09-02Publica...
Laboratory testing of tidal turbine models is an essential tool to investigate hydrodynamic interact...
An improved characterisation of the unsteady hydrodynamic loads on tidal turbine blades is necessary...
Characterisation of the unsteady hydrodynamic loads is essential for accurate predictions of the fat...
Tidal turbines encounter a range of unsteady flow conditions, some of which may induce severe load f...
This paper presents blade root bending moment measurements of a horizontal-axis tidal turbine for pl...
An improved characterisation of the hydrodynamic blade loads due to onset turbulence is essential in...
Initial results of an ongoing Navier-Stokes Computational Fluid Dynamics study of horizontal axis ti...
Tidal turbines are subject to highly dynamic mechanical loading through operation in some of the mos...
Accurate assessment of the fatigue life of tidal stream turbines and components requires prediction ...
Tidal turbines are deployed for extended periods in a harsh environment with significant levels of f...
This paper presents results from an experimental study which analysed the hydrodynamic response of t...
The transient interaction between tidal currents and the rotation of a horizontal axis turbine rotor...
AbstractThe transient interaction between tidal currents and the rotation of a horizontal axis turbi...
From MDPI via Jisc Publications RouterHistory: accepted 2021-08-25, pub-electronic 2021-09-02Publica...
Laboratory testing of tidal turbine models is an essential tool to investigate hydrodynamic interact...
An improved characterisation of the unsteady hydrodynamic loads on tidal turbine blades is necessary...
Characterisation of the unsteady hydrodynamic loads is essential for accurate predictions of the fat...
Tidal turbines encounter a range of unsteady flow conditions, some of which may induce severe load f...
This paper presents blade root bending moment measurements of a horizontal-axis tidal turbine for pl...
An improved characterisation of the hydrodynamic blade loads due to onset turbulence is essential in...
Initial results of an ongoing Navier-Stokes Computational Fluid Dynamics study of horizontal axis ti...
Tidal turbines are subject to highly dynamic mechanical loading through operation in some of the mos...
Accurate assessment of the fatigue life of tidal stream turbines and components requires prediction ...
Tidal turbines are deployed for extended periods in a harsh environment with significant levels of f...
This paper presents results from an experimental study which analysed the hydrodynamic response of t...
The transient interaction between tidal currents and the rotation of a horizontal axis turbine rotor...
AbstractThe transient interaction between tidal currents and the rotation of a horizontal axis turbi...
From MDPI via Jisc Publications RouterHistory: accepted 2021-08-25, pub-electronic 2021-09-02Publica...
Laboratory testing of tidal turbine models is an essential tool to investigate hydrodynamic interact...