• CN:11-2187/TH
  • ISSN:0577-6686

›› 2014, Vol. 50 ›› Issue (4): 172-177.

• 论文 • 上一篇    下一篇

汽轮机动叶栅顶部泄漏流的数值分析

曹丽华;张冬雪;胡鹏飞;李勇   

  1. 东北电力大学能源与动力工程学院
  • 发布日期:2014-02-20

Numerical Analysis of Tip Leakage Flow in Steam Turbine Rotor Cascades

CAO Lihua;ZHANG Dongxue;HU Pengfei;LI Yong   

  1. School of Energy and Power Engineering, Northeast China Dianli University
  • Published:2014-02-20

摘要: 为研究围带对汽轮机叶顶间隙泄漏流的影响,以某汽轮机级为研究对象,采用- SST湍流模型、结构化网格,对无围带及有围带动叶顶部的间隙泄漏流动进行数值模拟,分析间隙流和泄漏涡的形成、发展及其对汽轮机性能的影响。结果表明,无围带时,叶顶间隙泄漏流在叶顶前缘形成顺时针的漩涡,在吸力面附近和尾缘出口形成顺时针的泄漏涡;沿着轴向流动距离的增加,泄漏涡的影响范围逐渐变大。有围带时,叶顶间隙泄漏流在叶顶尾缘附近形成逆时针的泄漏涡。但无论有无围带,与泄漏涡对应的通道涡的旋向都和泄漏涡相反。随着叶顶部间隙的增加,有围带和无围带时的泄漏涡强度都变大,总压损失系数都增加。当叶顶间隙相同时,靠近叶顶处约80%叶高以上的区域内,有围带叶栅出口截面上的总压损失系数均小于无围带叶栅出口截面上相应位置的总压损失系数。

关键词: 汽轮机;间隙流;泄漏涡;通道涡;数值模拟

Abstract: In order to investigate the effects of shroud on the tip leakage flow in turbine rotor cascades, numerical simulations on different tip clearance leakage flow of unshrouded and shrouded blade in the stage of a steam turbine are performed, the - sst turbulence model and the structure grid are adopted. The formation and development of tip clearance leakage flow and leakage vortex, as well as their influences on turbine performance are analyzed.The results show that, for the unshrouded rotor cascades, the clockwise leakage vortex is formed near the suction side and trailing edge because of the blade tip leakage flow exiting, and the incidence of the leakage vortex becomes larger from upstream to downstream of the blade. While for the shrouded rotor cascades, the counterclockwise leakage vortex is formed on the top of blade trailing edge. However, the rotation directions of their corresponding passage vortex are both opposite from that of leakage vortex. The intensity of leakage vortex and the total pressure loss coefficients increase with increasing the tip clearances. When the tip clearance is the same, the total pressure loss coefficients of the shrouded blade is always less than that of the unshrouded blade in an appropriate position at the blade tip above 80 percent blade height.

Key words: steam turbine;tip clearance flow;leakage vortex;passage vortex;numerical simulation

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