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Finite Element Analysis of Turbine Generator Rotor Winding Shorted Turns

机译:汽轮发电机转子绕组短匝的有限元分析

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摘要

Online magnetic flux monitoring via permanently installed air-gap flux probes is a well-established technology to determine the presence of shorted turns in a turbine generator rotor winding. Flux measurements are normally performed using flux probes installed in the machine air gap (on a stator wedge) and connected to portable or permanently installed instruments. In this “flux probe” test, to achieve a reliable diagnostic, the signal from the flux probe has to be measured under different load conditions ranging from no load to full load. This requirement presents a serious obstacle when applying this method on base load units. Recently, a new design of magnetic flux probe installed on the stator tooth was implemented. In addition, new algorithms used to analyze measurements using different types of flux probes were developed to minimize the need for tests at different load conditions. A finite element model (FEM) has been created to verify these new algorithms in different loading conditions. Based on this model, and real-world measurements, it has been demonstrated that accurate detection of shorted turns can be obtained without the need to vary the load on the machine if suitable sensors and algorithms are applied. This paper describes the new method and its advantages, comparing results obtained from online measurements on working generators and the FEM created to simulate different rotor conditions.
机译:通过永久性安装的气隙通量探头进行在线磁通量监控是一项成熟的技术,可以确定涡轮发电机转子绕组中是否存在短路匝。通量测量通常使用安装在机器气隙中(定子楔上)并连接到便携式或永久安装的仪器的通量探头执行。在此“磁通探头”测试中,为了实现可靠的诊断,必须在从无负载到满负载的不同负载条件下测量来自磁通探头的信号。在基本载荷单位上应用此方法时,此要求构成了严重障碍。最近,实现了一种安装在定子齿上的磁通探头的新设计。此外,开发了用于分析使用不同类型通量探头的测量值的新算法,以最大程度地减少在不同负载条件下进行测试的需求。已经创建了一个有限元模型(FEM),以验证这些新算法在不同加载条件下的有效性。基于此模型和实际测量,已证明,如果应用了合适的传感器和算法,则无需改变机器负载即可获得对短路匝的精确检测。本文介绍了这种新方法及其优势,并比较了在线测量工作发电机和模拟不同转子条件的有限元方法获得的结果。

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