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基于三元理论喷水推进轴流泵改进设计 被引量:1

Optimization of Axial Water Jet Flow Pump Based on 3D Design Method
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摘要 以某高速艇喷泵为研究对象,运用CFD方法计算并分析喷泵敞水性能缺陷,针对缺陷进行三元改进设计。首先以国外某混流式喷水推进泵为例,用基于雷诺时均的数值计算方法对喷泵敞水性能进行模拟,各转速下喷泵功率计算误差在1.5%以内,验证了本文所用数值计算方法的可信性。然后对该高速艇喷泵敞水性能进行计算,利用CFX软件后处理分析出设计缺陷,对轴面线重新设计,将两级导叶改为一级导叶。并且,针对叶轮做功效率低和导叶整流效果差的问题,利用三元设计方法将叶片负载分布改为前重载型以此提高喷泵效率。最后计算改进后的喷泵效率提高了5%左右,表明了三元设计方法在喷泵改进设计上的实用性。 In order to check out the accuracy of 3D design method and bring it to optimize pump design, the study analyzes the design defects of on motorboat' water jet pump based on CFD and solves the problem via 3D design. Firstly, a foreign water jet pump(mixed-flow pump)'s performance is simulated by solving Reynolds-Averaged Navier-Stokes equations and these results consist well with the manufacturer's data, the error is less than 1.5%, which verifies that the method this paper used is exact and believable. Secondly, the motorboat's performance is calculated by CFD and CFX-post is used to analyze the defects resulted from design. Finally, the study uses one-stage stator instead of two-stage stator and designs a new meridional channel, which uses 3D design method to solve the design defects by change the loading distribution. At last, the axial pump's efficiency is increased by 5%, the results indicate that 3D design method is practical.
作者 李均
出处 《机电设备》 2015年第6期72-78,共7页 Mechanical and Electrical Equipment
关键词 喷水推进器 三元设计 优化设计 CFD water jet 3D design optimal design CFD
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  • 1卢金铃,席光,祁大同,邱凯.离心泵三元扭曲叶片设计的研究[J].工程热物理学报,2002,23(S1):61-64. 被引量:14
  • 2曹树良,梁莉,祝宝山,陆力.高比转速混流泵叶轮设计方法[J].江苏大学学报(自然科学版),2005,26(3):185-188. 被引量:42
  • 3蔡佑林,王立祥,张新.混流泵叶轮三元可控速度矩的设计[J].流体机械,2005,33(11):13-15. 被引量:15
  • 4Pierret S, van den Braembussche R A. Turbomachinery blade design using a Navier-Stokes solver and artifieial neural network [J]. ASME Journal of Turbomaehinery, 1999, 121(2):326-332. 被引量:1
  • 5Ashihara K, Goto A. Turbomachinery blade design using 3-D inverse design method CFD and optimizationalgorithm[A]. Proceeding of ASME Turbo Expo[C]. New Orleans,USA: ASME, 2001.1-9. 被引量:1
  • 6Shyy W, Papila N, Vaidyanathan R, et al. Global design optimization for aerodynamics and rocket propulsion components[J]. Progress in Aerospace Sciences,2001,37(1):59-118. 被引量:1
  • 7张勤昭,曹树良,祝宝山,粱开洪,陆力.高比转速混流泵叶轮正反问题计算[J].清华大学学报(自然科学版),2007,47(9):1435-1438. 被引量:9
  • 8BUCHINGHAM J E. Modeling of waterjets in a propulsion system [ C ]//International Conference of Waterjet Propulsion IV, London, Edinburgh,2004. 被引量:1
  • 9ALLISION J L. Marine waterjet propulsions [ J ]. Transac- tion of SNAME, 1993, 101:275-335. 被引量:1
  • 10WISLICENUS G F. Hydrodynamic design principles of pumps and ducting for water-Jet propulsion. Report 3990 [ R ]. [ s. 1. ] : Naval Ship Research and Development Center, 1973. 被引量:1

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