首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >BEARING HOUSING DESIGN FOR VIBRATION CONTROL, USING TILTING PAD BEARINGS INSTEAD OF LEMON-BORE TYPE ON A GAS TURBINE
【24h】

BEARING HOUSING DESIGN FOR VIBRATION CONTROL, USING TILTING PAD BEARINGS INSTEAD OF LEMON-BORE TYPE ON A GAS TURBINE

机译:轴承外壳设计用于振动控制,使用倾斜垫轴承而不是燃气轮机上的柠檬孔型

获取原文

摘要

Heavy duty gas turbines are usually equipped with hydrodynamic bearings which are either lemon-bore or tilting pad type. Baker Hughes legacy gas turbines use these two types of bearings, and its selection is based on 1) considering pros & cons from Rotor dynamics, 2) bearing performance, 3) bearing housing stiffness, 4) Vibration detection & control. Non-contact probes are used to monitor the vibrations of rotor. Majority of legacy gas turbines are not equipped with these probes. Due to this fact, over the years it resulted in non-detection of dynamics & vibration issue, which caused frequent bearing replacement. As the increase in industry demand to apply and measure vibrations using non-contact probes on bearings, an effort was made by Baker Hughes to implement these on existing fleet units. Also, in order to increase rotor dynamics stability of low-pressure rotor, to improve bearing life and performance, effort was made to replace lemon-bore bearings with tilting pad. This paper demonstrates efforts made to design the titling pad which would fit within envelop of already available bearing housing. Bearing/shaft clearance, bearing performance, modification of bearing retainer clearances are the mandatory tasks which would be dealt in this study. The swap of bearing type, and its effect on whole gas turbine rotor dynamic stability, checking the frequency crossovers with Campbell diagram would also be dealt in this paper. This paper also focuses on assessment on oil passage routing, temperature & proximity probe instrumentation routing design. Re-design is performed by analyzing various configuration, assessing different sensitivity studies & validation of modified bearing housing from structural integrity, ultimate load capability, & split plane oil leakage retention and its comparison with baseline are most important aspects of finalization of this change, which will be showcased in this paper. Instrumentation routing was a critical task when the considering bearing replacement from lemon-bore to tilting pad. As lemon-bore type bearings just have an elliptical inner surface, it s quite easy to install the thermocouples into a simple hole. But as replacement has tilting pads, the challenge is to instrument the pads without effecting their movement and functionality. Such best practices are also dealt in this paper. Comparison of tilting-padwith lemon-bore, considering the fixed shaft diameter, the retainer outer diameter of tilting pad is higher than lemon-bore. This effect has a change in bearing seat on bearing housing, thereby reducing the effective stiffness of the housing, and the reduced split plane surface. To tackle this situation, several sensitivities were executed, by re-modifying the bolts and bolt holes on the existing housing, without modifying the housing envelop.
机译:重型燃气轮机通常配备有柠檬钻或倾斜垫类型的流体动力轴承。 Baker Hughes遗产燃气轮机使用这两种类型的轴承,其选择基于1)考虑到转子动力学,2)轴承性能,3)轴承壳体刚度,4)振动检测和控制。非接触式探针用于监测转子的振动。大多数传统燃气轮机没有配备这些探针。由于这一事实,多年来它导致了不检测动态和振动问题,这导致频繁的轴承更换。随着工业需求的增加,在轴承上使用非接触式探针施用和测量振动,贝克休斯在现有的舰队单位上实施了这些努力。此外,为了提高低压转子的转子动力学稳定性,为了提高轴承寿命和性能,努力取代倾斜垫的柠檬孔轴承。本文展示了为设计标题垫而设计的努力,该垫子将适合于已有轴承座的包围内。轴承/轴间隙,轴承性能,轴承保持器间隙的改装是本研究中将处理的强制性任务。轴承类型的交换及其对整个燃气轮机转子动态稳定性的影响,在本文中也将用坎贝尔图检查频率交叉。本文还侧重于对油通道路由,温度和近距离探头仪表路由设计进行评估。通过分析各种配置进行重新设计,评估改进的轴承壳体的不同敏感性研究和验证从结构完整性,最终负载能力和分割平面油泄漏保留及其与基线的比较是最终确定这种变化的最重要方面,这将在本文中展示。仪器路由是当考虑允许柠檬钻孔到倾斜垫时的关键任务。由于柠檬型轴承只有一个椭圆形内表面,它很容易将热电偶安装到一个简单的孔中。但随着替代品具有倾斜垫,挑战是仪器仪器而不会影响其运动和功能。本文还处理了这种最佳实践。倾斜垫的比较柠檬孔,考虑到固定轴直径,倾斜垫的保持器外径高于柠檬孔。这种效果具有轴承壳体上的轴承座的变化,从而减小了壳体的有效刚度,以及减小的平面表面。为了解决这种情况,通过重新修改现有外壳上的螺栓和螺栓孔,而不改变外壳包围的情况,执行了几种敏感性。

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