"Wells Turbine for Wave Energy Conversion —Improvement of the Performance by Means of Impulse Turbine for Bi-Directional Flow"
written by Shinya Okuhara, Manabu Takao, Akiyasu Takami, Toshiaki Setoguchi,
published by Open Journal of Fluid Dynamics, Vol.3 No.2A, 2013
has been cited by the following article(s):
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[12] Enhancement of performance of wave turbine during stall using passive flow control: first and second law analysis
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[13] Exploration of power take off in wave energy converters with two-body interaction
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[14] Numerical Simulation of Vortex Shedding at Triangular Obstacle for Various Reynolds Numbers and Times with Open FOAM
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[15] Reduction in carbon footprints with wave solar hybrid generation along coastal Maharashtra
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[16] Experimental Research on Performances of Air Turbines for a Fixed Oscillating Water Column-Type Wave Energy Converter
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[17] Assessment of wave and solar energy potential along Western coast of India
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[18] Feasibility study and design of an ocean wave power generation station integrated with a decommissioned offshore oil platform in UK waters
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[19] Wells turbine with booster: Effect of rotational speed ratio on the performance
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[20] ブースターを有するウエルズタービンの性能解析
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[21] 多对称机械系统的功能设计研究
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[22] Virtual wave flume and Oscillating Water Column modeled by lattice Boltzmann method and comparison with experimental data
International Journal of Marine Energy, 2016
[23] Power Generation through Wind Turbine in Locomotives & validation of performance parameters for a Bi-Directional Wind Turbine: Wells Turbine
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[24] Wells turbine for wave energy conversion: a review
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[25] 固定式振動水柱型波力発電装置の 1 次および 2 次変換効率に関する実験的研究
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[26] Investigation and Improvement of Wells Turbine Performance: Fluid Analysis & 2nd Law of Thermodynamics Study
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[27] 衝動タービンを有する固定式 OWC 型波力発電装置の高効率化に関する実験的研究
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[28] Current status of Wells Turbine for Wave Energy Conversion
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[29] 0513 固定式振動水柱型波力発電装置の効率向上に関する実験的研究
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[30] The Use of Glass Wall to Minimize Heat Loss in Solar Thermal Cyclone Wind Turbine