大功率汽轮机末级动叶气动弹性特性研究

IF 1.1 Q4 ENGINEERING, MECHANICAL Journal of Mechanical Engineering and Sciences Pub Date : 2023-03-30 DOI:10.15407/pmach2023.01.006
Liubov V. Kolodiazhna, Y. Bykov
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引用次数: 4

摘要

大功率汽轮机叶片承受较大的非定常载荷,在某些情况下会导致自激振荡或自激振荡的出现。这些波动是非常危险的,并对叶片的寿命产生负面影响。在开发新的或升级现有涡轮级时,有必要对转子叶片的气动弹性特性进行研究。由于1000mw汽轮机低压缸的现代化,最后一级转子叶片的长度增加到1650毫米。为此,对末级动叶在标称工况下的气动弹性特性进行了数值分析。采用求解非定常气动与叶片弹性振动耦合问题的方法,对粘性气流中非定常载荷与叶片振动的幅频谱进行了预测。本文对末级动叶的气动弹性特性进行了数值分析,分析了给定幅值和叶间相移的可控谐波振动模式和非定常气动力影响下叶片的耦合振动模式。对前五种自然形式的叶片耦合振荡进行了仿真,得到了叶片周边截面位移的时间分布,以及作用在叶片周边截面上的力和力矩的时间分布。给出了周边截面位移和荷载的幅频谱。计算结果表明,在汽轮机公称运行模式下,叶片的前五种自然振荡形式均具有正阻尼、不存在颤振和自振荡
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Aeroelastic Characteristics of Rotor Blades of Last Stage of a Powerful Steam Turbine
Blades of powerful steam turbines are subjected to significant unsteady loads, which, in some cases, can lead to the appearance of self-excited oscillations or auto-oscillations. These fluctuations are extremely dangerous and negatively affect the life time of the blading. When developing new or upgrading existing turbine stages, it is necessary to carry out research on the aeroelastic behavior of the rotor blades. As a result of the modernization of a low-pressure cylinder of a 1000 MW steam turbine, the length of the rotor blades of the last stage increased to 1650 mm. In this regard, a numerical analysis of the aeroelastic characteristics of the last-stage rotor blades in the nominal operation mode was carried out. The analysis used the method of solving the coupled problem of unsteady aerodynamics and elastic blade vibrations, which allows the prediction of the amplitude-frequency spectrum of unsteady loads and blade vibrations in a viscous gas flow. The paper presents the results of numerical analysis of aeroelastic characteristics of the last stage rotor blades both for the mode of controlled harmonic oscillations with a given amplitude and inter-blade phase shift, and for the mode of coupled oscillations of the blades under influence of unsteady aerodynamic forces. The results of the simulation of coupled oscillations of blades for the first five natural forms are presented in the form of the time distribution of displacement of the blade peripheral cross-section, as well as the time distribution of forces and moments acting on the peripheral cross-section. The corresponding amplitude-frequency spectra of displacements and loads in the peripheral section are also given. The results of the calculations showed a positive damping of oscillations, the absence of flutter and auto-oscillations for the first five natural forms of oscillations of the blades in the nominal operation mode of the steam turbine
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期刊介绍: The Journal of Mechanical Engineering & Sciences "JMES" (ISSN (Print): 2289-4659; e-ISSN: 2231-8380) is an open access peer-review journal (Indexed by Emerging Source Citation Index (ESCI), WOS; SCOPUS Index (Elsevier); EBSCOhost; Index Copernicus; Ulrichsweb, DOAJ, Google Scholar) which publishes original and review articles that advance the understanding of both the fundamentals of engineering science and its application to the solution of challenges and problems in mechanical engineering systems, machines and components. It is particularly concerned with the demonstration of engineering science solutions to specific industrial problems. Original contributions providing insight into the use of analytical, computational modeling, structural mechanics, metal forming, behavior and application of advanced materials, impact mechanics, strain localization and other effects of nonlinearity, fluid mechanics, robotics, tribology, thermodynamics, and materials processing generally from the core of the journal contents are encouraged. Only original, innovative and novel papers will be considered for publication in the JMES. The authors are required to confirm that their paper has not been submitted to any other journal in English or any other language. The JMES welcome contributions from all who wishes to report on new developments and latest findings in mechanical engineering.
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