首页> 外文会议>International Conference on Materials Technology and Energy >Numerical investigations on axial and radial blade rubs in turbo-machinery
【24h】

Numerical investigations on axial and radial blade rubs in turbo-machinery

机译:涡轮机械轴向和径向叶片摩擦的数值研究

获取原文

摘要

In the recent years, the clearance between the rotor blades and stator/casing had been getting smaller and smaller prior improving the aerodynamic efficiency of the turbomachines as demand in the engineering field. Due to the clearance reduction between the blade tip and the rotor casing and between rotor blades and stator blades, axial and radial blade rubbing could be occurred, especially at high speed resulting into complex nonlinear vibrations. The primary aim of this study is to address the blade axial rubbing phenomenon using numerical analysis of rotor system. A comparison between rubbing caused impacts of axial and radial blade rubbing and rubbing forces are also aims of this study. Tow rotor models (rotor-stator and rotor casing models) has been designed and sketched using SOILDSWORKS software. ANSYS software has been used for the simulation and the numerical analysis. The rubbing conditions were simulated at speed range of 1000rpm, 1500rpm and 2000rpm. Analysis results for axial blade rubbing showed the appearance of blade passing frequency and its multiple frequencies (1x, 2x 3x etc.) and these frequencies will more excited with increasing the rotational speed. Also, it has been observed that when the rotating speed increased, the rubbing force and the harmonics frequencies in x, y and z-direction become higher and severe. The comparison study showed that axial blade rub is more dangerous and would generate a higher vibration impacts and higher blade rubbing force than radial blade rub.
机译:在近年来,转子叶片和定子/壳体之间的间隙在工程领域中的需求中提高了涡轮机的空气动力学效率越来越小且较小。由于刀片尖端和转子壳体之间的间隙和转子叶片和转子叶片之间的间隙,可以发生轴向和径向叶片摩擦,特别是高速导致复杂的非线性振动。本研究的主要目的是使用转子系统的数值分析来解决叶片轴向摩擦现象。摩擦与轴向和径向叶片摩擦和摩擦力的影响的比较也是本研究的目的。牵引转子型号(转子定子和转子套管型号)设计和速写使用Soildsworks软件。 ANSYS软件已用于模拟和数值分析。摩擦条件在1000rpm,1500rpm和2000rpm的速度范围内模拟。轴向叶片摩擦的分析结果显示刀片通过频率及其多频率(1x,2x 3x等)的外观,并且这些频率将更兴奋地升高转速。而且,已经观察到,当转速增加时,摩擦力和x,y和z方向上的谐波频率变得更高且严重。比较研究表明,轴向叶片摩擦更危险,并且会产生比径向叶片摩擦更高的振动冲击和更高的叶片摩擦力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号