【24h】

TURBOMACHINERY DUAL ROTOR-BEARING SYSTEM ANALYSIS

机译:涡轮机械双转子轴承系统分析

获取原文
获取外文期刊封面目录资料

摘要

It is very common for aircraft engines to have dual rotor or even triple rotor designs. Due to the complexity of having a multiple rotor design, the transfer matrix methods have been used in the past to deal with multiple rotor-bearing systems. However, due to transfer matrix method's assumptions, it sometimes resulted in numerical stability problems or root-missing problems. The purpose of this paper is to develop a systematic theoretical analysis of the dynamic characteristics of turbomachinery dual rotor-bearing systems. This dual rotor-bearing system analysis will start with a finite element (FEM) rotor-bearing system dynamic model, then using different methods to verify the analysis results including critical speed map and bearing stiffness. In an inertia coordinate system, a general model of continuous dual rotor-bearing systems is established based on a lagrangian formulation. Gyroscopic moment, rotary inertia, bending and shear deformations have been included in the model. From a point of view of the systematic approach, a solution of the finite element method is used to calculate the critical speeds by several different methods, which in turn can help to verify this dual rotor-bearing system approach. The effects of the speed ratio of dual rotors on the critical speed will be studied, which in turn can be used as one of the dual rotor design parameters. Also, both critical speeds are in effect functions of dual rotor speeds. Finally, the bearing stiffness between high speed and low speed shafts not only affect the critical speeds of the dual rotor system, but also affect the mode shapes of the system. Therefore, the bearing stiffness in- between is of even greater importance in turbomachinery dual rotor or multiple rotor design.
机译:飞机发动机具有双转子甚至三转子设计是非常普遍的。由于具有多转子设计的复杂性,过去已使用传递矩阵方法来处理多转子轴承系统。但是,由于传递矩阵法的假设,有时会导致数值稳定性问题或根丢失问题。本文的目的是对涡轮机械双转子轴承系统的动力学特性进行系统的理论分析。这种双转子轴承系统分析将从有限元(FEM)转子轴承系统动力学模型开始,然后使用不同的方法来验证分析结果,包括临界转速图和轴承刚度。在惯性坐标系中,基于拉格朗日公式建立了连续双转子轴承系统的通用模型。模型中包括了陀螺力矩,旋转惯性,弯曲和剪切变形。从系统方法的角度来看,使用有限元方法的解决方案通过几种不同的方法来计算临界速度,这又可以帮助验证这种双转子轴承系统方法。将研究双转子的速比对临界转速的影响,然后将其用作双转子设计参数之一。同样,两个临界速度实际上都是双转子速度的函数。最后,高速轴和低速轴之间的轴承刚度不仅影响双转子系统的临界速度,而且影响系统的模式形状。因此,在涡轮机械双转子或多转子设计中,介于两者之间的轴承刚度就显得尤为重要。

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