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Counter-Rotating Type Horizontal-Axis Bidirectional Propellers for Tidal Stream Power Unit
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作者 yuki funami Yuji Nakanishi +2 位作者 Nak-Joong Lee Bin Huang Toshiaki Kanemoto 《Journal of Power and Energy Engineering》 2017年第7期34-44,共11页
Tidal stream power units with horizontal-axis propellers are one of promising technologies for generating the renewable green energy. The ebb and flow require that the power unit must operate in bidirectional tidal st... Tidal stream power units with horizontal-axis propellers are one of promising technologies for generating the renewable green energy. The ebb and flow require that the power unit must operate in bidirectional tidal streams. Hence a tidal stream power unit with counter-rotating type horizontal-axis bidirectional propellers is proposed in this paper. The blades with fully-symmetrical hydrofoils were optimized numerically. The output and flow conditions predicted by the computational fluid dynamics simulations are compared with the results of the wind tunnel experiments at the higher tip speed ratios, which are of expected usual operating conditions of this unit. The numerical and experimental results show good agreements. It is also confirmed that the flow discharged from the counter-rotating type propellers has no swirling component, though the single propeller generates the unacceptable swirling component. 展开更多
关键词 BIDIRECTIONAL PROPELLERS COUNTER-ROTATING TYPE Machine TIDAL STREAM Power Unit Computational Fluid Dynamics
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Non-Contact Measurements of Water Jet Spreading Width with a Laser Instrument 被引量:1
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作者 yuki funami Ryo Hasuya +1 位作者 Kotaro Tanabe Yuji Nakanishi 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第4期349-354,共6页
Jet spreading width is one of the important characteristics of water jets discharging into the air.Many researchers have dealt with measuring this width,and contact measuring methods on the water jet surface were empl... Jet spreading width is one of the important characteristics of water jets discharging into the air.Many researchers have dealt with measuring this width,and contact measuring methods on the water jet surface were employed in a lot of the cases.In order to avoid undesirable effects caused by the contact on the jet surface,we introduce non-contact measuring methods with a laser instrument to the measurements of jet spreading width.In measurements,a transmitter emits sheet-like laser beam to a receiver.The water jet between the transmitter and the receiver interrupts the laser beam and makes a shadow.The minimum and maximum values of the shadow width are measured.In addition,pictures of the water jet are taken with a scale,and the shadow width is measured from the pictures.The experiments on various needle strokes were performed.Three kinds of width consistent with the jet structure were obtained.In the results,it can be concluded that our non-contact measuring methods are feasible.The data of jet spreading widths and jet taper were obtained and are useful for future applications. 展开更多
关键词 Water jet Jet spreading width Jet taper Non-contact measurement Laser instrument
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