航空学报 > 2008, Vol. 29 Issue (5): 1125-1132

一种改进的轴流涡轮叶尖对泄漏流影响的数值研究

李伟,乔渭阳,许开富,罗华玲   

  1. 西北工业大学 动力与能源学院
  • 收稿日期:2007-07-27 修回日期:2007-11-28 出版日期:2008-09-25 发布日期:2008-09-25
  • 通讯作者: 李伟

Numerical Study of Influence on Tip Leakage Flow in Axial Turbine with an Improved Tip

Li Wei,Qiao Weiyang,Xu Kaifu,Luo Hualing   

  1. College of Power and Energy, Northwestern Polytechnical University
  • Received:2007-07-27 Revised:2007-11-28 Online:2008-09-25 Published:2008-09-25
  • Contact: Li Wei

摘要:

结合基于压力修正的采用雷诺应力湍流模型加壁面函数的三维计算流体力学程序,通过改进涡轮叶尖表面结构以期减小叶尖间隙泄漏损失,即在传统叶尖边缘镶嵌肋条的基础上倾斜压力面肋条,对这种改进叶尖的某一轴流涡轮转子的泄漏流场进行了数值研究,并详细分析了不同肋条高度和肋条深度对泄漏流场的影响,最后计算了涡轮效率。结果表明:通过改进的涡轮叶尖对泄漏流动进行被动控制,压力面斜肋条可以阻碍泄漏流动,同时叶尖区域回流区也减小泄漏流动,从而涡轮效率提高;肋条高度对涡轮效率有较大影响,且有个最佳肋条高度值,在最佳肋条高度下涡轮效率提高0.215%;肋条深度对流场影响不大,但小肋条深度可以稍微提高涡轮效率。

关键词: 叶尖间隙高度, 叶尖泄漏涡, 肋条叶尖, 被动控制, 数值模拟

Abstract:

In order to reduce the tip leakage loss, a pressure correction based, 3D Reynoldsaveraged Navier-Stokes equations CFD code with Reynolds stress model and wall function is used to simulate the effects of the passive control of an improved tip of a pressure side tip shelf with vertical squealer tip on the tip leakage flow in a turbine rotor. With different shelf heights and depths in an improved tip, the effect on the tip leakage flow, especially on the efficiency, is sequentially simulated and compared with the baseline flow field with a flat tip. The results show that the recirculation region appearing in the tip region and the inclined shelf near pressure side can block the tip leakage flow in the effect of an improved tip, then the turbine efficiency increases. The height of tip platform shelf has more effect on the turbine efficiency, and the shelf height has an optimal value, where the turbine efficiency can increase by 0.215%.The shelf depth has less effect on the flow field, and the turbine efficiency slightly increases when the shelf depth is small.

Key words: tip clearance height, tip leakage vortex, squealer tip, passive control, numerical simulation

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