首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >PARAMETRIC INFLUENCES ON THE NONLINEAR DYNAMIC RESPONSES OF A ROTOR-BEARING-FOUNDATION-LABYRINTH SEAL SYSTEM
【24h】

PARAMETRIC INFLUENCES ON THE NONLINEAR DYNAMIC RESPONSES OF A ROTOR-BEARING-FOUNDATION-LABYRINTH SEAL SYSTEM

机译:参数对转子基础 - 迷宫密封系统的非线性动力响应的影响

获取原文
获取外文期刊封面目录资料

摘要

The modern engineering industries rely heavily on the reliable operation of rotating machinery, e.g., steam turbine and gas turbine. These rotating machineries are inevitable to be excited by the unbalance mass forces, the oil film forces and seal forces. Moreover, the turbines installed in an aircraft as well as vessel are also excited by the base vibration. In order to retain the healthy operation and prolong the interval between overhauls, an enormous amount of experimental and theoretical investigations have been focused on the dynamic behaviors of the rotor system. The dynamic characteristics of the rotor system influenced by the single source of vibration, such as unbalance, flowing lubricating oil, sealing medium etc., and combined sources of vibration have also been thoroughly researched. However, the dynamic responses of the rotor-bearing-foundation system subjected to labyrinth seal forces have seldom been studied. Furthermore, the previous analyses of the rotor dynamics mostly were linear. In fact, the fluid film forces are strongly nonlinear functions of the displacement and velocity of the rotor. As a result, the rotordynamics of the turbine is highly nonlinear. It is not accurate enough to be considered from a linear point of view. Applying the energy method, this paper established a dynamic model of the rotor-bearing-foundation-labyrinth seal system. The influences of the geometrical parameters and operating conditions, such as mass eccentricities, inlet pressure and rotational speed etc., on the nonlinear dynamic behaviors of the rotor system are numerically studied. The responses of the same system excited by one side of and both sides of base movement are also comparatively analyzed by means of spectrum cascades, bifurcation diagrams and whirl orbits as well as Poincare maps.
机译:现代工程行业严重依赖于旋转机械的可靠运行,例如汽轮机和燃气轮机。这些旋转机器是不可避免的,不平衡的质量力,油膜力和密封力是不可避免的。此外,安装在飞机中以及容器中的涡轮机也是通过基部振动激发的。为了保留健康的操作并延长过大的间隔,已经专注于转子系统的动态行为的大量实验和理论研究。还研究了由单一振动源影响的转子系统的动态特性,如不平衡,流动的润滑油,密封介质等以及组合的振动源。然而,对迷宫密封力进行的转子承载基础系统的动力响应很少已经研究过。此外,转子动力学的先前分析主要是线性的。事实上,流体膜力是转子的位移和速度的强烈非线性函数。结果,涡轮机的旋转动力学是高度非线性的。从线性角度来看,它不足以准确。本文应用了能量法,建立了转子 - 轴承基础迷宫式密封系统的动态模型。几何参数和操作条件的影响,例如质量偏心,入口压力和转速等,在转子系统的非线性动态行为上进行了数量地研究。通过光谱级联,分叉图和旋转轨道以及Poincare Maps的一侧和两侧激发的基础移动的一侧和两侧的相同系统的响应也相对较好地分析。

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