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Experimental investigation about the incipient velocity of spherical particles on a hemispherical bed surface
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作者 Chuannan Li Jie Chen +2 位作者 Changbo Jiang Xie Li Zhiyuan Wu 《Particuology》 SCIE EI CAS CSCD 2024年第5期49-61,共13页
The sediment particles play a huge role in shaping the bed load transport.In this research,240 water-tunnel experiments are carried out to investigate the incipient velocity of the observation particles in two particl... The sediment particles play a huge role in shaping the bed load transport.In this research,240 water-tunnel experiments are carried out to investigate the incipient velocity of the observation particles in two particle arrangements.To accurately predict the incipient velocity of the observation particles,the equation is conceived by the rolling instability mechanism.The incipient velocity equations and experimental data are used to analyze the trend of dispersive pressure and the effect of arrangement position on velocity.We find that it is appropriate to choose the coefficient of drag as 0.261 and the coefficient of lift as 0.198 for the incipient velocity equation of spherical particles on the hemispherical bed surface.Furthermore,the dispersive pressure is closely related to the flow state,particle size,and particle arrangement,which leads to the incipient velocity of the observation particle being at a minimum when the interference particle angle is 45°.Finally,the particle spacing and the projected area changed with the arrangements,directly affecting the incipient velocity of the observed particle.The analysis of four aspects for the coefficients,dispersive pressure,different particle spacing,and projected area will facilitate the prediction of particle incipient velocity,especially on hemispherical beds. 展开更多
关键词 Hemispherical bed surface Observed particle interference particle Dispersive pressure Incipient velocity
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A combined signal processing approach against coherent interference with pressure and particle velocity
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作者 HUI Junying, LI Chunxu, LIANG Guolong, LIU Hong (Harbin Engineering University Harbin 150001) 《Chinese Journal of Acoustics》 2001年第3期193-202,共10页
Comparing with traditional underwater acoustic system which only utilizes pressure information, combine sensor system processes pressure together with particle velocity information of sound field. More information ce... Comparing with traditional underwater acoustic system which only utilizes pressure information, combine sensor system processes pressure together with particle velocity information of sound field. More information certainly brings nicer processing result. By using spatial directional information collected by combine sensor, the Coherent Interference Energy Suppress (CIES) technology, which can effectively suppress coherent interference and detect linear spectrum signal and wide-band continuous-spectrum signal as well, is presented. Current research has shown favorite result, and further research is going on. 展开更多
关键词 A combined signal processing approach against coherent interference with pressure and particle velocity
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