首页> 外文期刊>International Journal of Rotating Machinery >Investigations on the Blade Vibration of a Radial Inflow Micro Gas Turbine Wheel
【24h】

Investigations on the Blade Vibration of a Radial Inflow Micro Gas Turbine Wheel

机译:径向流入微型燃气轮机叶片的叶片振动研究

获取原文
       

摘要

This paper demonstrates the investigations on the blade vibration of a radial inflow micro gas turbine wheel. Firstly, the dependence of Young's modulus on temperature was measured since it is a major concern in structure analysis. It is demonstrated that Young's modulus depends on temperature greatly and the dependence should be considered in vibration analysis, but the temperature gradient from the leading edge to the trailing edge of a blade can be ignored by applying the mean temperature. Secondly, turbine blades suffer many excitations during operation, such as pressure fluctuations (unsteady aerodynamic forces), torque fluctuations, and so forth. Meanwhile, they have many kinds of vibration modes, typical ones being blade-hub (disk) coupled modes and blade-shaft (torsional, longitudinal) coupled modes. Model experiments and FEM analysis were conducted to study the coupled vibrations and to identify the modes which are more likely to be excited. The results show that torque fluctuations and uniform pressure fluctuations are more likely to excite resonance of blade-shaft (torsional, longitudinal) coupled modes. Impact excitations and propagating pressure fluctuations are more likely to excite blade-hub (disk) coupled modes.
机译:本文演示了径向流入微型燃气轮机叶片叶片振动的研究。首先,测量了杨氏模量对温度的依赖性,因为它是结构分析中的主要问题。结果表明,杨氏模量很大程度上取决于温度,并且在振动分析中应考虑其依赖性,但是通过应用平均温度可以忽略叶片从前缘到后缘的温度梯度。其次,涡轮叶片在运行过程中遭受许多激励,例如压力波动(不稳定的空气动力),扭矩波动等。同时,它们具有多种振动模式,典型的是叶片-轮毂(盘)耦合模式和叶片-轴(扭转,纵向)耦合模式。进行了模型实验和有限元分析,以研究耦合振动并确定更可能被激发的模式。结果表明,扭矩波动和均匀压力波动更容易激发叶片-轴(扭转,纵向)耦合模式的共振。冲击激励和传播的压力波动更可能激发叶片-轮毂(磁盘)耦合模式。

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