1 |
Developing a coupled turbine thrust methodology for floating tidal stream concepts: Verification under prescribed motion Brown SA, Ransley EJ, Greaves DM Renewable Energy, 147, 529, 2020 |
2 |
The performance and hydrodynamics in unsteady flow of a horizontal axis tidal turbine Abuan BE, Howell RJ Renewable Energy, 133, 1338, 2019 |
3 |
Application of the actuator disc theory of Delft3D-FLOW to model far-field hydrodynamic impacts of tidal turbines Ramos V, Carballo R, Ringwood JV Renewable Energy, 139, 1320, 2019 |
4 |
Fatigue life of pitch- and stall-regulated composite tidal turbine blades Kennedy CR, Jaksic V, Leen SB, Bradaigh CMO Renewable Energy, 121, 688, 2018 |
5 |
Simulation of horizontal axis tidal turbine wakes using a Weakly-Compressible Cartesian Hydrodynamic solver with local mesh refinement Elie B, Oger G, Guillerm PE, Alessandrini B Renewable Energy, 108, 336, 2017 |
6 |
The influence of blade pitch angle on the performance of a model horizontal axis tidal stream turbine operating under wave-current interaction Henriques TAD, Hedges TS, Owen I, Poole RJ Energy, 102, 166, 2016 |
7 |
Optimization of blade setting angles of a counter-rotating type horizontal-axis tidal turbine using response surface methodology and experimental validation Huang B, Usui Y, Takaki K, Kanemoto T International Journal of Energy Research, 40(5), 610, 2016 |
8 |
Model testing of a series of bi-directional tidal turbine rotors Liu PF, Bose N, Frost R, Macfarlane G, Lilienthal T, Penesis I, Windsor F, Thomas G Energy, 67, 397, 2014 |
9 |
Prototyping a series of bi-directional horizontal axis tidal turbines for optimum energy conversion Liu PF, Bose N Applied Energy, 99, 50, 2012 |
10 |
Design and optimization for strength and integrity of tidal turbine rotor blades Liu PF, Veitch B Energy, 46(1), 393, 2012 |