期刊文献+

喷水推进泵通用特性曲线的计算流体动力学分析 被引量:9

Computational fluid dynamics analyses for generalized waterjet pump performance curves
原文传递
导出
摘要 通过联合数值模拟求得设计转速下泵扬程-流量和效率-流量曲线和泵相似定理,计算得到混流式喷水推进泵量纲为一的特性曲线。进一步由计算流体动力学(CFD)计算得到空化条件下泵扬程和效率随吸口比转速变化的修正函数曲线。叶片面涡空化由降低进口总压来实现,转速和流量输入参数由非空化条件下喷水推进系统CFD计算求得。在全航速范围内,该特性曲线还可作为比转速与该泵相近的混流式喷水推进泵通用的特性曲线模型。 Performance curves for a mixed-flow waterjet pump were developed using numerical simulations to calculate the pump head-capacity and efficiency-capacity curves at the design speed using similarity. Then a correction function curve was developed to modify the head and efficiency versus suction specific speed during cavitation using computational fluid dynamics (CFD). The pump's sheet cavitation is induced by reducing the inlet total pressure for a given capacity and rotational speed and flux input parameters are obtained from CFD simulations of the waterjet at the same speed without cavitation. These performance curves over the entire speed range can also be used as a generalized model for mixed-flow waterjet pumps having similar specific speed.
出处 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2010年第8期1311-1315,共5页 Journal of Tsinghua University(Science and Technology)
基金 国防"十一五"预研项目
关键词 喷水推进泵 性能曲线 计算流体动力学 空化 waterjet pump performance curves computational fluid dynamics (CFD) cavitation
  • 相关文献

参考文献15

  • 1Parha W G, Janga J H, Chunb H H, et al. Numerical flow and performance of waterjet propulsion system [J]. Ocean Engineering, 2005, 32 : 1740 - 1761.
  • 2Bulten N. Numerical Analysis of a Waterjet Propulsion System [D]. Netherlands: Library Eindhoven University of Technology, 2006.
  • 3Bulten N. A breakthrough in wateriet propulsion systems [C]// International Maritime Defense Exhibition and Conference. Doha, Qatar, 2008.
  • 4LIU Chengjiang, WANG Yongsheng. Numerical simulation and analysis of cavitation performance of a waterjet [C]// International Conference on Waterjet Propulsion 5. London, UK, 2008.
  • 5CDI Marine Systems Development Division. Advanced compact wateriet propulsion for high-speed ships [C]// 9th International Marine Design Conference. Ann Arbor, USA, 2006.
  • 6Hu P, Zangeneh M. CFD calculation of the flow through a waterjet pump [C]// International Conference on Waterjet Propulsion III. Gothenborg, Sweden, 2001.
  • 7YANG Qiongfang, WANG Yongsheng. Research on the optimum blades number of the mixed flow pump based on CFD [C]// International Conference on Waterjet Propulsion 5. London, UK, 2008.
  • 8杨琼方,王永生,张志宏,丁江明.喷水推进泵三维造型研究及其流体动力性能CFD分析[J].武汉理工大学学报(交通科学与工程版),2008,32(5):921-924. 被引量:4
  • 9杨琼方,王永生,张志宏,丁江明.叶片数对喷水推进器性能影响的计算流体动力学分析[J].机械工程学报,2009,45(6):222-228. 被引量:21
  • 10杨琼方,王永生,范露.CFD在“机电一体化”导管桨性能分析及优化设计中的应用[J].机械工程学报,2010,46(1):162-168. 被引量:10

二级参考文献35

  • 1沙毅,何明,张广志,尹成龙.微型旋涡泵叶片数对性能的影响[J].排灌机械,1994,12(2):19-20. 被引量:4
  • 2李群,陈五一.基于UG的发动机整体叶轮三维造型研究[J].组合机床与自动化加工技术,2005(9):5-7. 被引量:12
  • 3王福军,黎耀军,王文娥,丛国辉,王利萍.水泵CFD应用中的若干问题与思考[J].排灌机械,2005,23(5):1-10. 被引量:95
  • 4严利,严敬,熊朝坤.UG技术在扭曲叶片三维造型中的应用[J].中国农机化,2006(2):82-83. 被引量:2
  • 5Parha W G, Janga J H, Chunb H H, et al. Numerical flow and performance analysis of waterjet propulsion system [J]. Ocean Engineering, 2005, 321 1740-1761.
  • 6Roberts J L, Walker G J. Boundary layer ingestion effects in flush waterjet intakes [C]// International Conference on Waterjet Propulsion II. The Netherlands: RINA, 1998.
  • 7Verbeek R, Bulten N W H. Interpretation of model scale test results with aid of CFD ealeulations[C]// International Conferenee on WaterjetPropulsion III, Sweden: RINA, 2001.
  • 8Hu P, Zangeneh M. CFD calculation of the flow through a waterjet pump [C]// International Conference on Waterjet Propulsion Ⅲ, Sweden: RINA, 2001.
  • 9STEPANOFF A J. Centrifugal and axial flow pumps[M]. New York: John Wiley & Sons Inc., 1957.
  • 10M1NER S M. CFD Analysis of the first-stage rotor and stator in a two-stage mixed flow pump[J]. International Journal of Rotating Machinery, 2005(1): 23-29.

共引文献80

同被引文献99

引证文献9

二级引证文献62

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部