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Suppression of Vortex Precession in a Non-Contact Handling Device by a Circular Column 被引量:2
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作者 Shouichiro Iio Katsuya Hayashi +3 位作者 Eri Akahane yusuke katayama Xin Li Toshiharu Kagawa 《Journal of Flow Control, Measurement & Visualization》 2016年第2期70-78,共9页
Vortex levitation attains non-contact handling by injecting air through a tangential nozzle into a cylindrical cup generating the swirling flow. The precessing of the swirling flow causes pressure fluctuation. This ph... Vortex levitation attains non-contact handling by injecting air through a tangential nozzle into a cylindrical cup generating the swirling flow. The precessing of the swirling flow causes pressure fluctuation. This phenomenon becomes apparent as the gap between the cup and workpiece increases, which significantly disturbs the stability of conveyance. In this paper, suppression of pressure fluctuation by a cylindrical column that stabilizes the vortex levitation is described and its mechanism is mentioned. According to the experimental set up, the pressure was measured at the center of the workpiece and the wall of the cup;velocity field under the work piece was visualized by PIV. The result suggested that the larger diameter column denoted the effect on suppression of the fluctuation because the precessing of the swirling flow became stable. On the other hand, variation of the column thickness had insignificant effect on suppressing the fluctuation, but sucking force became weakened since the swirling velocity decreased. 展开更多
关键词 Non-Contact Handling Swirling Flow Pressure Fluctuation VISUALIZATION
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Jet Flapping Control with Acoustic Excitation
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作者 Shouichiro Iio Ken Hirashita +3 位作者 yusuke katayama Yoshiaki Haneda Toshihiko Ikeda Tomomi Uchiyama 《Journal of Flow Control, Measurement & Visualization》 2013年第2期49-56,共8页
The dynamics of flapping motion of a rectangular jet under acoustic excitation is studied experimentally by means of hot-wire measurement and flow visualization with smoke method. The excitation sufficiently enables“... The dynamics of flapping motion of a rectangular jet under acoustic excitation is studied experimentally by means of hot-wire measurement and flow visualization with smoke method. The excitation sufficiently enables“phase-lock”, which permitted us to extract the organized wave motion from a background field of finite turbulent fluctuations. The mean and fluctuation velocity are investigated and focused on the excitation frequency and the Reynolds number. As the excitation frequency decreases, it was found that the jet flapping and the jet spread were enhanced. The excitation with sub-harmonic frequency has significant effects on the rectangular jet behavior. The maximum value of the periodic velocity fluctuation strongly depends on the excitation frequency. 展开更多
关键词 JET CONTROL RECTANGULAR JET VORTEX HOT Wire Visualization
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Effects of Clearance between Rotor and Ground on the Performance of an Open Cross-Flow-Type Nano-Hydraulic Turbine
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作者 Tomomi Uchiyama Shouhei Mizoguchi +2 位作者 Shouichiro Iio yusuke katayama Toshihiko Ikeda 《Journal of Energy and Power Engineering》 2016年第8期465-473,共9页
Flows through an open cross-flow-type nano-hydraulic turbine are numerically simulated to investigate the effects of the clearance Hc between the rotor and the ground on the turbine performance. A two-dimensional part... Flows through an open cross-flow-type nano-hydraulic turbine are numerically simulated to investigate the effects of the clearance Hc between the rotor and the ground on the turbine performance. A two-dimensional particle method is employed, which was successfully used for flow simulations of impulse-type and open cross-flow-type nano-hydraulic turbines in the authors' previous works. When the clearance Hc is smaller than a critical value, the simulated turbine performance decreases with decreasing Hc, in good agreement with the experiment. The simulations make it clear that such a reduction of turbine performance is attributable to an increase in the circumferential component of the water velocity at the rotor outlet. The simulations also demonstrate that the effect of the tip speed ratio of the rotor on the relation between Hc and turbine performance can be analyzed. 展开更多
关键词 Nano-hydraulic turbine computer simulation WATERFALL particle method.
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Influence of Setting Condition on Characteristics of Savonius Hydraulic Turbine with a Shield Plate 被引量:5
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作者 Shouichiro Iio yusuke katayama +2 位作者 Fuminori Uchiyama Eiichi Sato Toshihiko Ikeda 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第3期224-228,共5页
The aim of this investigation was to improve power performance of Savonius hydraulic turbine utilizing small stream for electric generation.An attempt was made to increase the power coefficient of runner by the use of... The aim of this investigation was to improve power performance of Savonius hydraulic turbine utilizing small stream for electric generation.An attempt was made to increase the power coefficient of runner by the use of flat shield plate placed upstream of the runner.The difference of the power coefficient is discussed in relation to clearance between the runner and the bottom wall and the rotation direction of the runner.The flow field around the runner was also examined visually to clarify influences of setting conditions on the power performance.From this study it was found that the power coefficient is achieved for 0.47 by only using a flat shield plate,the increase is up to 80% over the runner without the plate.Moreover,it is the proper condition that clearance ratio is 0.73 in this study. 展开更多
关键词 Nano-hydraulic turbine Savonius runner Shield plate Performance
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