China Mechanical Engineering ›› 2012, Vol. 23 ›› Issue (3): 320-323.

Previous Articles     Next Articles

Hydraulic Design of Axial Turbine Blades with Ultra-low Specific Speed for Decreasing Capacity and Increasing Efficiency

Liu Youyu1, 2;Han Jiang2
  

  1. 1.Anhui Polytechnic University,Wuhu, Anhui, 241000
    2.Hefei University of Technology, Hefei,230009
  • Online:2012-02-10 Published:2012-02-15
  • Supported by:
     
    National Natural Science Foundation of China(No. 51175001);
    Anhui Provincial Natural Science Program of Higher Education of China
    No. KJ2011B023);
    Anhui Provincial Natural Science Foundation of China(No. 11040606M144)

基于减容增效的超低比转速轴流式叶片水力设计

刘有余1,2;韩江2
  

  1. 1. 安徽工程大学,芜湖,241000
    2.合肥工业大学,合肥,230009
  • 基金资助:
    国家自然科学基金资助项目(51175001);安徽省高等学校省级自然科学研究项目(KJ2011B023);安徽省自然科学基金资助项目(11040606M144) 
    National Natural Science Foundation of China(No. 51175001);
    Anhui Provincial Natural Science Program of Higher Education of China(No. KJ2011B023);
    Anhui Provincial Natural Science Foundation of China(No. 11040606M144)

Abstract:

To solve the problem that propeller turbines were unfit for working under small discharge conditions in dry seasons, after discussing the influencing factors, a rebuilding scheme for decreasing capacity and increasing efficiency was put forward. The distribution of the axial velocity and the velocity circulation at the inlet and the outlet were researched. Some key technologies in computer aided hydraulic design were solved herein, including unfolded drawing of aero foil converted to cylindrical surface and intelligent extension of curve. An example of a runner blade for a real turbine sets was successfully developed with the self-development CAD software. When the discharge is decreased from 4.5m3/s to 1.5m3/s, the efficiency of the hydraulic turbine increases from less than 30.1% to 82.7%, then the sets can work properly, and its cavitation performances are superior to the original one.

Key words: axial turbine blade, decreasing capacity &, increasing efficiency, ultra-low specific speed, computer aided hydraulic design

摘要:

为解决轴流定桨式机组枯水期小流量下不能发电的难题,在分析其原因的基础上提出减容增效实施策略;研究了进出口轴向流速及环量沿半径分布规律;解决了计算机辅助水力设计关键技术难题,包括翼型展开图向计算流面圆柱面转化技术及曲线智能延伸技术;用自行开发的CAD软件为一实际机组设计轴流式叶片,在流量从4.5m3/s减至1.5m3/s时,机组效率从改造前的低于30.1%增大至82.7%,机组能够正常发电,且叶片汽蚀性能优于原转轮汽蚀性能。

关键词:

CLC Number: