首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2010 >MORTON EFFECT INDUCED SYNCHRONOUS INSTABILITY IN MID-SPAN ROTOR-BEARING SYSTEMS, PART 1: MECHANISM STUDY
【24h】

MORTON EFFECT INDUCED SYNCHRONOUS INSTABILITY IN MID-SPAN ROTOR-BEARING SYSTEMS, PART 1: MECHANISM STUDY

机译:中跨转子轴承系统中的摩顿效应引起的同步不稳定,第1部分:机理研究

获取原文
获取原文并翻译 | 示例

摘要

The Morton Effect in the rotor - bearing systems may lead to an unstable operation. In Part 1, the mechanism of the Morton Effect induced thermal instability in the mid-span rotor systems has been studied. First, the equivalent thermal induced imbalance is introduced and its magnitude and directions are assumed, to represent the viscous thermal effect on the rotor systems. Then, the simplified rotor and bearing models are adopted for the derivation of analytical expressions. The results show that there exists a threshold of instability due to the Morton Effect in the mid-span rotors. Based on the assumptions of linear isotopic bearing supports, this threshold speed takes a simple form, which is determined by the support stiffness and the introduced equivalent coefficient of thermal effect, for the rigid or elastic systems with the thermal imbalance acting in the same direction as the response displacement. The threshold of instability has also been obtained for the system with the thermal imbalance acting perpendicular to the direction of response displacement, where the supporting damping plays a role. For a perspective view of the system stability, a stability map for the damped rigid mid-span rotors with the thermal imbalance having arbitrary phase difference has been generated. It shows that the stable operating regions of the system are bounded by two curves of threshold of instability, named the first and second threshold speeds of instability, respectively. The Morton Effect inducedrninstability thresholds are actually affected by both the magnitude and relative phase of the thermal imbalance. The mechanism of the Morton Effect induced thermal instability of mid-span rotors supported by linear isotropic bearings can be explained through the fact that the Morton Effect introduces either negative stiffness or negative cross-coupled stiffness. In addition, the Morton Effect also has a comprehensive impact on both the amplitude and phase lag of the steady-state unbalance response. It may shift both curves in a manner dependent on the relative magnitude and direction of the thermal imbalance.
机译:转子轴承系统中的莫顿效应可能会导致运行不稳定。在第1部分中,研究了中跨转子系统中莫顿效应引起的热不稳定性的机理。首先,引入等效的热感应不平衡,并假设其大小和方向,以表示对转子系统的粘性热效应。然后,采用简化的转子和轴承模型来推导解析表达式。结果表明,由于中跨转子的莫顿效应,存在一个不稳定性阈值。基于线性同位素轴承支撑的假设,对于具有热不平衡作用的刚性或弹性系统,该阈值速度采用简单形式,由支撑刚度和引入的等效热效应系数确定。响应位移。对于热失衡垂直于响应位移方向起作用的系统,也已获得系统的不稳定性阈值,其中,支撑阻尼起着作用。对于系统稳定性的透视图,已生成具有任意相位差的热不平衡的阻尼刚性中跨转子的稳定性图。结果表明,系统的稳定运行区域受到两条不稳定阈值曲线的限制,分别称为不稳定的第一阈值速度和第二不稳定速度阈值。莫顿效应引起的不稳定性阈值实际上受热失衡的大小和相对相位的影响。莫顿效应引起负各向同性刚度或负交联刚度这一事实可以解释由线性各向同性轴承支撑的中跨转子的莫顿效应引起的热不稳定性的机理。此外,莫顿效应还对稳态不平衡响应的幅度和相位滞后产生全面影响。它可能以取决于热不平衡的相对大小和方向的方式移动两条曲线。

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