首页> 外文期刊>Power technology and engineering >ANALYSIS OF CAUSES, EXPERIENCE IN MONITORING, AND REDUCTION OF INCREASED STATOR VIBRATION OF TURBOGENERATORS WITH TANGENTIAL ELASTIC CORE SUSPENSION DESIGNS
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ANALYSIS OF CAUSES, EXPERIENCE IN MONITORING, AND REDUCTION OF INCREASED STATOR VIBRATION OF TURBOGENERATORS WITH TANGENTIAL ELASTIC CORE SUSPENSION DESIGNS

机译:采用切向弹性核心悬挂设计的原因分析,监控经验以及降低涡轮发电机定子振动增加的原因

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摘要

The increased vibration of the stators in TGV series turbogenerators with tangential elastic core suspension is examined. The existing repair options for vibration reduction are reviewed briefly. Results are presented from a theoretical study of the dependence of the dynamic properties of turbogenerator stators on the rigidity with which the core is fastened to the intermediate frame and the rigidity with which the housing is fastened to the foundation. Based on these results, an improved technology is proposed for reducing the stator core vibration. This technology is applied to a type TGV-300 turbogenerator with an unsatisfactory vibrational state of the stator. An analysis of vibration monitor data prior to the repairs and for the subsequent two years of operation showed that these actions made it possible to reduce and stabilize the vibration of the stator core and housing. The effectiveness of these measures depends substantially on their timely application. turbogenerator; stator; core mounting system; vibration.
机译:研究了切向弹性铁心悬架的TGV系列涡轮发电机中定子的增加振动。简要介绍了减少振动的现有维修选项。通过对涡轮发电机定子的动态特性与铁心固定到中间框架的刚度以及壳体固定到基础的刚度的相关性的理论研究得出了结果。基于这些结果,提出了一种用于减小定子铁芯振动的改进技术。该技术应用于定子振动状态不理想的TGV-300型涡轮发电机。在维修之前以及随后的两年运行中对振动监测器数据的分析表明,这些措施可以减少并稳定定子铁芯和壳体的振动。这些措施的有效性在很大程度上取决于它们的及时实施。涡轮发电机定子;核心安装系统;振动。

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  • 来源
    《Power technology and engineering》 |2019年第5期|575-583|共9页
  • 作者单位

    JSC 'Elcktroscrvis-NTTsG,' Moscow, Russia;

    JSC 'Elcktroscrvis-NTTsG,' Moscow, Russia;

    JSC 'Elcktroscrvis-NTTsG,' Moscow, Russia;

    Stavropol State Regional Electric Power Plant (GRES), Branch of PJSC 'OGK-2,' Solncchnodol'sk, Stavropol kray, Russia;

    Stavropol State Regional Electric Power Plant (GRES), Branch of PJSC 'OGK-2,' Solncchnodol'sk, Stavropol kray, Russia;

    Stavropol State Regional Electric Power Plant (GRES), Branch of PJSC 'OGK-2,' Solncchnodol'sk, Stavropol kray, Russia;

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