Open Journal of Fluid Dynamics

Open Journal of Fluid Dynamics

ISSN Print: 2165-3852
ISSN Online: 2165-3860
www.scirp.org/journal/ojfd
E-mail: ojfd@scirp.org
"Experimental Investigation of Performance of the Wind Turbine with the Flanged-Diffuser Shroud in Sinusoidally Oscillating and Fluctuating Velocity Flows"
written by Kazuhiko Toshimitsu, Hironori Kikugawa, Kohei Sato, Takuya Sato,
published by Open Journal of Fluid Dynamics, Vol.2 No.4A, 2012
has been cited by the following article(s):
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[1] Shrouded wind turbines: a critical review on research and development
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[2] 3-Dimensional CFD Simulation and Experimental Analysis on Performance of a New Diffuser and Wind Channel for a Micro Wind Turbine
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[3] Parametric design analysis of elliptical shroud profile
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[4] Attempt to quantify the impact of seasonal air density variation on operating tip-speed ratio of small wind turbines
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[6] Shrouded wind turbine for low wind speed
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[7] Simplified numerical modeling of rotational speed response for a small wind turbine
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[9] MOBILE COMPOSITE WIND POWER PLANT WITH DIFFUSER
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[10] CFD Analysis of Wind Turbine with Different Flange Angles
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[11] Large exit flanges in diffuser-augmented turbines lead to sub-optimal performance
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[12] Ottimizzazione di una turbina eolica di tipo Shrouded
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[13] Study the Effect of Blade Angles on the Performance of Axial Six Blades Wind Turbine
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[14] The Influence of Unsteady Wind on the Performance and Aerodynamics of Horizontal Axis Wind Turbines
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[15] CFD analysis of diffuser augmented wind turbine
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[16] An Experimental Study of Horizontal Axis Wind Turbine Performance in Artificial Natural Wind by an Active Control Multi-Fan Turbulent Wind Tunnel
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[17] Performance analysis of wind turbine using wind lens technology
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[18] Optimal Wind Turbine for a Wind Farm in Iran
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[19] Optimization of the Power Output of a Bare Wind Turbine by the Use of a Plain Conical Diffuser
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[20] Experimental study of improved HAWT performance in simulated natural wind by an active controlled multi-fan wind tunnel
Journal of Thermal Science, 2017
[21] Experimental Investigation of Wind Turbine Using Nozzle-lens at Low Wind Speed Condition
Energy Procedia, 2017
[22] Investigation of Horizontal Axis Wind Turbine Performance in Simulated Nat-ural Wind by an Active Control Multi-Fan Wind Tunnel
Proceedings of 13th International Symposium on Experimental and Computational Aerothermodynamics of Internal Flows, 2017
[23] 슈라우드 디퓨져의 효과적인 유동을 위한 후단 형상의 연구
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[24] Issue in the Technology Selection for a Wind Farm in Iran
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[25] Analysis and Comparison of Custom Constructed Small-Scale Wind Augmentation Device with a Wind-Guide Attachment to Improve Wind Power Generation
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[26] Pengaruh Tipe Mixer Ejektor dan Sudu Non-Twisted Naca 6412 Terhadap Daya Listrik Turbin Angin Poros Horizontal
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[27] Modal analysis of a solid runner for small wind turbines
New trends on Integrity …, 2016
[28] 新型风力/洋流涡轮气动及引射特性
JOURNAL OF HARBIN INSTITUTE OF TECHNOLOGY, 2016
[29] Review on Wind Lens for Horizontal Axis Wind Turbine
IJSTE - International Journal of Science Technology & Engineering, 2016
[30] Simplified equations for the rotational speed response to inflow velocity variation in fixed-pitch small wind turbines
Fluid Dynamics Research, 2015
[31] Design of wind turbines with shroud and lobed ejectors for efficient utilization of low-grade wind energy
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[32] Adaptive neuro-fuzzy estimation of diffuser effects on wind turbine performance
Energy, 2015
[33] 涡轮出口气流角对低速风力引射器流场影响的数值研究
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[34] PERFORMANCE AND FLOW FIELD OF A WIND-LENS TURBINE IN STEADY AND SINUSOIDALLY OSCILLATING VELOCITY WINDS
K Toshimitsu, T Arakane, M Saiki, T Sato - oita-ct.ac.jp, 2014
[35] Investigation of the Flow Field around the Horizontal Axis Wind Turbine with the Flanged-diffuser Shroud in Steady and Sinusoidally Oscillating Velocity Winds
K Toshimitsu, H Kikugawa, M Saiki, T Arakane - oita-ct.ac.jp, 2014
[36] WIND LOADS AND EFFICIENCY OF A DIFFUSER AUGMENTED WIND TURBINE (DAWT)
WD Lubitz, A Shomer - soe.uoguelph.ca, 2014
[37] Adaptive neuro-fuzzy estimation of building augmentation of wind turbine power
Computers & Fluids, 2014
[38] 小型風車における空気密度変化に起因する運転周速比変化の定量化に関する基礎検討
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