Transient Analysis of Thermal Bending and Vibration of Steam Turbine Rotor

Nonso Omenife, Dawood Desai, Regan Dunne
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Abstract

Rotor-bearing systems often exhibit nonlinear behavior due to hydrodynamic effects and external forces. Finite element methods based on linear analysis are commonly used for rotor dynamic analyses, where nonlinear bearing/damping forces are linearized into equivalent stiffness and damping coefficients. However, this method may not accurately describe strongly nonlinear systems. Engineers use transient analysis and nonlinear models to improve rotor behavior analysis. This study investigates the effects of transient-thermal bending and vibration on a high-pressure steam turbine rotor using the finite element method. A scaled rotor-shaft was used to study thermal bending and vibrations caused by steam heat. The design of the shaft was based on an existing power station high-pressure turbine rotor. Numerical modal analyses were performed using ANSYS software to obtain a partial level of integrity between the numerical model and the analytical model. Natural frequencies were compared between the experimental, numerical, and analytical results, which showed good correlations.
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汽轮机转子热弯曲与振动的瞬态分析
由于流体动力效应和外力作用,转子轴承系统经常表现出非线性行为。基于线性分析的有限元方法通常用于转子动力学分析,其中非线性轴承/阻尼力被线性化为等效刚度和阻尼系数。然而,这种方法可能不能准确地描述强非线性系统。工程师使用瞬态分析和非线性模型来改进转子的性能分析。采用有限元方法研究了高压汽轮机转子的瞬态热弯曲和振动对转子的影响。本文采用尺度转子轴对蒸汽热引起的热弯曲和振动进行了研究。轴的设计是基于现有电站高压涡轮转子。利用ANSYS软件进行数值模态分析,以获得数值模型与解析模型之间的部分完整性。将实验、数值和分析结果进行了固有频率的比较,结果显示出良好的相关性。
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