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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Effect of tip clearance on performance of contra-rotating axial flow water-jet propulsion pump
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Effect of tip clearance on performance of contra-rotating axial flow water-jet propulsion pump

机译:尖端清除对旋转轴流水喷射喷射泵性能的影响

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摘要

Insufficient understanding of tip clearance on hydraulic and thrust performance is a major problem encountered in the design and application of the contra-rotating axial flow water-jet pumps. In order to investigate the effect of tip clearance on hydrodynamic and thrust characteristics of the pump, tip clearance coefficient sigma is defined and scraping rate tau is introduced in this paper. Head coefficient and hydraulic efficiency are obtained with the numerical prediction and experiment as sigma = 1, which are in good agreement with each other. With the increase of sigma, the saddle area of head coefficient slows down and the high efficiency zone narrows. Along the relative chord length of shroud of the rear rotor, the tau presents an opening down quadratic curve as 1 < sigma < 4, and if sigma > 4, it presents a "M" shape nearly. Comparing the two operating conditions of contra-rotating rotors and single rotor, the tau and wake effect of the rear rotor are enhanced and inhibited by the front rotor respectively for the interference between the two rotors, the thrust coefficient of the propulsion pump reaches the maximum when sigma = 4.
机译:对液压和推力性能的对尖端间隙的理解不足是对反旋转轴流水喷射泵的设计和应用中遇到的主要问题。为了研究尖端间隙对泵的流体动力学和推力特性的影响,本文介绍了定义尖端间隙系数Sigma和刮率Tau。用数值预测和实验作为Sigma = 1获得头部系数和液压效率,这与彼此吻合良好。随着Sigma的增加,头部系数的鞍座区域向下减慢,高效率区域变窄。沿后转子护罩的相对弦长,Tau呈现为1 4,则稍微呈现“M”形状。比较旋转转子和单转子的两个操作条件,后转子的Tau和唤醒效果分别由前转子的前转子抑制,用于两个转子之间的干扰,推动泵的推力系数达到最大值当sigma = 4时。

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