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Analysis of the impeller's tip clearance size on the operating characteristics of the underwater vehicle with a new high-speed water jet propulsion pump

机译:新型高速水喷射推进泵对水下车辆操作特性的叶轮尖端间隙尺寸分析

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摘要

To make up for the lack of study on high-speed water jet prop- ulsion pump tip clearances, a newly developed water jet pump system close to the critical specific speed nsc has been investigated. Based on the body of the underwater vehicle and the non-uniform flow, the pump system with different tip clearance sizes (0.1, 0.2, 0.4, 0.8 mm) is evaluated and validated via numerical simulations. Preliminary steady simulating results demonstrate that increasing the tip clearance size can reduce the overall performance of the head, the efficiency, pump thrust, and the consuming power. Following further unsteady simulations, we reveal the unsteady dynamic performance induced by the tip clearances, related to the similar distribution characteristics of the pressure intensities and the pressure pulsations around the underwater vehicle. Furthermore, the pressure intensity and pressure pulsations in the pump increase with the tip clearance. Quantitative and comparative analysis of the distribution characteristics indicates that the blade loading and scrapping effect of the shroud are key factors influencing the leakage flow. At last, the leakage flow's dynamic distributing law under different tip clearances have been clarified.
机译:为了弥补缺乏对高速水射流泵尖端间隙的研究,研究了靠近临界特定速度NSC的新开发的水射流系统。基于水下车辆的主体和不均匀的流动,通过数值模拟评估和验证具有不同尖端间隙尺寸(0.1,0.2,0.4,0.8mm)的泵系统。初步稳定模拟结果表明,增加尖端间隙尺寸可以降低头部的整体性能,效率,泵推力和消耗功率。在进一步不稳定的模拟之后,我们揭示了尖端间隙引起的不稳定动态性能,与水下车辆周围的压力强度和压力脉动的类似分布特性相关。此外,泵中的压力强度和压力脉动随尖端间隙而增加。分布特性的定量和比较分析表明护罩的叶片加载和刮擦效果是影响泄漏流动的关键因素。最后,澄清了不同尖端间隙下的泄漏流动的动态分布规律。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|2075-2075|共1页
  • 作者

    Y. Lu; X. Wang; H. Liu;

  • 作者单位

    School of Energy and Power Engineering Dalian University of Technology Dalian 116000 China;

    School of Energy and Power Engineering Dalian University of Technology Dalian 116000 China;

    School of Energy and Power Engineering Dalian University of Technology Dalian 116000 China;

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  • 正文语种 eng
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