Design of a horizontal axis tidal current turbine

被引:97
作者
Goundar, Jai N. [1 ]
Ahmed, M. Rafiuddin [1 ]
机构
[1] Univ S Pacific, Div Mech Engn, Suva, Fiji
关键词
Horizontal axis tidal current turbine; Hydrofoils; Cavitation number; Critical coefficient of pressure; Coefficient of power;
D O I
10.1016/j.apenergy.2013.04.064
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Pacific Island Countries (PICs) have a huge renewable energy potential to meet their energy needs. Limited resources are available on land; however, large amount of ocean energy is available and can be exploited for power generation. PICs have more sea-area than land-area. Tidal current energy is very predictable and large amount of tidal current energy can be extracted using tidal current energy converters. A 10 m diameter, 3-bladed horizontal axis tidal current turbine (HATCT) is designed in this work. Hydrofoils were designed for different blade location; they are named as HF10XX. The hydrodynamic characteristics of the hydrofoils were analyzed. A thick hydrofoil with a maximum thickness of 24% and a maximum camber of 10% was designed for the root region. The maximum thickness of hydrofoils was varied linearly from the root to the tip for easier surface merging. For the tip region, a thinner hydrofoil of maximum thickness 16% and maximum chamber 10% was designed. It was ensured that the designed hydrofoils do not experience cavitation during the expected operating conditions. The characteristics of the HF10XX hydrofoils were compared with other commonly used hydrofoils. The blade chord and twist distributions were optimized using BEM theory. The theoretical power output and the efficiency of the rotor were also obtained. The maximum power at the rated current of 2 m/s is 150 kW and the maximum efficiency is 47.5%. The designed rotor is found to have good efficiency at current speeds of 1-3 m/s. This rotor has better performance than some other rotors designed for HATCT. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:161 / 174
页数:14
相关论文
共 42 条
[31]   CFD study of a combined lift and drag-based novel Savonius vertical axis water turbine [J].
Basumatary, Mithinga ;
Biswas, Agnimitra ;
Misra, Rahul Dev .
JOURNAL OF MARINE SCIENCE AND TECHNOLOGY, 2023, 28 (01) :27-43
[32]   Modulated circulation control around the blades of a vertical axis hydrokinetic turbine for flow control and improved performance [J].
Gorle, J. M. R. ;
Chatellier, L. ;
Pons, F. ;
Ba, M. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2019, 105 :363-377
[33]   Studies on application of vertical axis hydro turbine for sustainable power generation in irrigation channels with different bed slopes [J].
Shashikumar, C. M. ;
Honnasiddaiah, Ramesh ;
Hindasageri, Vijaykumar ;
Madav, Vasudeva .
RENEWABLE ENERGY, 2021, 163 :845-857
[34]   3D CFD simulation and parametric study of a flat plate deflector for vertical axis wind turbine [J].
Wong, Kok Hoe ;
Chong, Wen Tong ;
Poh, Sin Chew ;
Shiah, Yui-Chuin ;
Sukiman, Nazatul Liana ;
Wang, Chin-Tsan .
RENEWABLE ENERGY, 2018, 129 :32-55
[35]   Design modification and performance prediction of ellipsoid cross-flow hydrokinetic turbine [J].
Bhagat, Ravindra ;
Kumar, Dinesh ;
Sarkar, Shibayan .
RENEWABLE ENERGY, 2023, 219
[36]   Hydrodynamic performance of a mono-tangent backward-rotating impeller based on tidal current energy utilization [J].
Wu, Zhen-hai ;
Xu, Qing ;
Ling, Chang -ming ;
Wu, Chang-qin .
OCEAN ENGINEERING, 2022, 258
[37]   Optimisation and performance analysis of vertical axis wind turbine with blade pitching at best position angle for different tip speed ratios [J].
Kavade, Ramesh K. ;
Ghanegaonkar, Pravin M. .
INTERNATIONAL JOURNAL OF AMBIENT ENERGY, 2020, 41 (07) :783-792
[38]   Effect of blade pitching on power coefficient of small-scale vertical axis wind turbine at different tip speed ratios [J].
Kavade, Ramesh K. ;
Ghanegaonkar, Pravin M. .
WIND ENGINEERING, 2020, 44 (03) :313-324
[39]   Effect of the Phase-Shift Angle on the vertical axis Savonius wind turbine performance as a renewable-energy harvesting instrument [J].
Prabowoputra, Dandun Mahesa ;
Prabowo, Aditya Rio .
ENERGY REPORTS, 2022, 8 :57-66
[40]   BEM Turbine Model and PID Control System of a Floating Hybrid Wind and Current Turbines Integrated Generator System [J].
Tamarit, Fernando ;
Garcia, Emilio ;
Quiles, Eduardo ;
Correcher, Antonio .
JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2023, 11 (08)