首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2011.;vol. 1 pt. B. >FIVE PAD TILTING PAD BEARING DESIGN AND LATERAL VIBRATION CHARACTERISTICS OF SMALL GAS TURBINE SUPPORTED BY IT AND ROLLER BEARING
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FIVE PAD TILTING PAD BEARING DESIGN AND LATERAL VIBRATION CHARACTERISTICS OF SMALL GAS TURBINE SUPPORTED BY IT AND ROLLER BEARING

机译:五辊倾斜垫轴承设计及其支承的小型燃气轮机的横向振动特性

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In tilting pad bearing design process, the selection of the proper configuration type of either a Load-Between-Pad (LBP) or Load-On-Pad (LOP) as well as preload and pivot offset conditions is to be carefully considered. Also the bearing needs to be designed in order to be suited for the rotor-bearing system and operating condition. In this paper, it is observed that the static and dynamic characteristics of a five pad tilting pad bearing for the LBP and LOP configurations are influenced by the variation of preload and pivot offset. In this context, rotor dynamic analysis of the 5 MW industrial gas turbine supported by the tilting pad bearing at the front and roller bearing at the rear is carried out based on the dynamic coefficients of the tilting pad bearing investigated. The result shows that two rigid body critical modes experience various changes according to the influence of the tilting pad bearing uniquely applied to one side of this machine. Mainly, the second critical speed, the rigid body mode of conical shape with high whirling in the tilting pad bearing, is significantly changed by preload and pivot offset regardless of the LBP and LOP configurations. And the first critical mode, the rigid body mode of conical shape with high whirling in the roller bearing, is sensitively affected by preload applied to the LOP configuration and by its asymmetric dynamic properties.
机译:在可倾瓦轴承的设计过程中,应仔细考虑选择中间负载(LBP)或中间负载(LOP)的正确配置类型,以及预紧和枢轴偏移的条件。此外,还需要设计轴承,以使其适合转子轴承系统和运行条件。在本文中,可以观察到,用于LBP和LOP构造的五轴瓦可倾瓦轴承的静态和动态特性受预紧力和枢轴偏移的变化影响。在此背景下,基于所研究的可倾瓦块轴承的动态系数,对由前部可倾瓦块轴承和后部可滚动轴承支撑的5 MW工业燃气轮机进行了转子动力学分析。结果表明,根据唯一应用于本机一侧的可倾瓦轴承的影响,两种刚体临界模式都会经历各种变化。主要是,第二临界速度,即在可倾瓦轴承中具有高回旋度的圆锥形刚性体模式,无论LBP和LOP配置如何,都会通过预紧力和枢轴偏移来显着改变。而第一个临界模式,即圆锥形的刚体模式,在滚子轴承中有很高的回旋度,受到施加于LOP配置的预载荷及其不对称动态特性的敏感影响。

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